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mouse dshb f55a10 pdx1  (Developmental Studies Hybridoma Bank)


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    Structured Review

    Developmental Studies Hybridoma Bank mouse dshb f55a10 pdx1
    Mouse Dshb F55a10 Pdx1, supplied by Developmental Studies Hybridoma Bank, used in various techniques. Bioz Stars score: 95/100, based on 85 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/mouse+anti-pdx1/anti-Homeobox+protein+Nkx-6%2E1/pmc11464881__41467_2024_53068_MOESM1_ESM-77-8-9
    Average 95 stars, based on 85 article reviews
    mouse dshb f55a10 pdx1 - by Bioz Stars, 2026-09
    95/100 stars

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    Related Articles

    Expressing:

    Article Title: p43, a Truncated Form of Thyroid Hormone Receptor α, Regulates Maturation of Pancreatic β Cells
    Article Snippet: The following antibodies were used: guinea pig anti-insulin (1/250; ab7842 Abcam, Cambridge, UK), mouse anti-glucagon (1/100; ab10988 Abcam), rabbit anti-MafA (1/100; IHC-00352 Bethyl Laboratories, Montgomery, TX, USA), mouse anti-PDX1 (1/200; F25A13B Developmental Studies Hybridoma Bank at the University of Iowa (Iowa City, IA, USA)), rabbit anti-PH3 (1/500; 06-570 Millipore, Merck KGaA, Darmstadt, Germany), rabbit anti-HNE (1/100; ab 46545 Abcam).

    Article Title: Pancreas lineage allocation and specification are regulated by sphingosine-1-phosphate signalling
    Article Snippet: Primary antibodies used were rabbit anti-Ngn3 (1:100; Acris), rat anti-E-cadherin (1:400; Zymed), rabbit anti-C-peptide (1:200; Linco), rabbit anti-Amylase (1:300; Sigma), rabbit anti-Ptf1a (1:3,000; Gift from B. Breant), rat anti-Cytokeratin19 (1:250; DSHB), mouse anti-Glucagon (1:500; Sigma), rabbit anti-Pdx1 (1:5,000; Gift from C. Wright), mouse anti-Pdx1 (1:250; DSHB), rabbit anti-Sphk (1:250; Abcam), mouse anti-Nkx6-1 (1:1,000; DSHB), mouse anti-Insulin (1:1,000; Sigma), rabbit anti-PH3 (1:500; Cell Signaling), rabbit anti-Yap1 (1:200; Cell Signaling), rabbit anti-NICD (1:100; Cell Signaling), rat anti-Hes1 (1:500; MBL-Biozol), and rabbit anti-Sel1l (1:250; Abcam).

    Article Title: Reprogramming of Pancreatic Exocrine Cells AR42J Into Insulin-producing Cells Using mRNAs for Pdx1, Ngn3, and MafA Transcription Factors
    Article Snippet: The following primary antibodies were used: rabbit anti-Pdx1 (1:200), rabbit anti-MafA (1:200), rabbit anti-insulin (1:300), mouse anti-C-peptide (1:100), mouse anti-glucagon (1:200) (Abcam, Cambridge, United Kingdom), mouse anti-Neurogenin3 (1:800), mouse anti-Pdx1 (1:400) (Developmental Studies Hybridoma Bank, Iowa City, IA), and rabbit anti-α-amylase (1:200) (Sigma-Aldrich).

    Article Title: The Transcription Factor Myt3 Acts as a Pro-Survival Factor in β-cells
    Article Snippet: Sections were co-stained with rabbit anti-Myt3 (1/250) and guinea pig anti-Insulin (1/1000; Linco), guinea pig anti-Glucagon (1/1000; Linco), guinea pig anti-PP (1/100; Linco), goat anti-Somatostatin (1/1000; Santa Cruz) or mouse anti-Pdx1 (1/500; DSHB).

    Article Title: ALDH1B1 is a potential stem / progenitor marker for multiple pancreas progenitor pools
    Article Snippet: Primary antibodies used were: rabbit anti–ALDH1B1 (1:500) ( Stagos et al., 2010 ) rabbit anti-NGN3 (1:200; gift from H. Edlund), rat anti-E-CADHERIN (1:400; Zymed), rat anti-CYTOKERATIN 19 (anti-CK-19; 1:250; DSHB), mouse anti-INSULIN (1:1,000; Sigma), mouse anti-GLUCAGON (1:500; Sigma), mouse anti-BrdU (1:200 DAKO), mouse anti-PDX1 (1:300, DSHB), rabbit anti-AMYLASE (1:300, Sigma), rabbit anti-SOX9 (1:500; Chemicon), PNA-FITC lectin (1:100, Sigma), DBA-Rhodamine (1:100, Vector Laboratories).

    Article Title: VHL-mediated disruption of Sox9 activity compromises β-cell identity and results in diabetes mellitus
    Article Snippet: The following primary antibodies were used: guinea pig anti-insulin (1:300; Millipore), mouse anti-insulin (1:300; Sigma), guinea pig anti-insulin (1:200; Dako North America, Inc.), rabbit anti-glucagon (1:300), guinea pig anti-glucagon (1:300; Millipore), mouse anti-glucagon (1:500; Sigma), rabbit anti-Glut2 (1:500), rabbit anti-Sox9 (1:200; Chemicon), rat anti-somatostatin (1:200; Millipore), mouse anti-Nkx6.1 (1:200; Developmental Studies Hybridoma Bank), rabbit anti-MafA (1:200; Bethyl Laboratories, Inc.), guinea pig anti-Pdx1 (1:200; gift from Mike German, University of California at San Francisco), mouse anti-Pdx1 (1:200; Developmental Studies Hybridoma Bank), rabbit anti-Pdx-1 (1:200; Chemicon), goat anti-Pdx-1 (1:200; R&D Systems), rabbit anti-cleaved caspase-3 (1:200; Cell Signaling), rat anti-HA (1:200; Roche Applied Science), mouse anti-synaptophysin (1:200; Biogenex), goat anti-NeuroD (1:200; Santa Cruz Biotechnology), and mouse anti-β-catenin (1:200; BD Biosciences).

    Staining:

    Article Title: p43, a Truncated Form of Thyroid Hormone Receptor α, Regulates Maturation of Pancreatic β Cells
    Article Snippet: The following antibodies were used: guinea pig anti-insulin (1/250; ab7842 Abcam, Cambridge, UK), mouse anti-glucagon (1/100; ab10988 Abcam), rabbit anti-MafA (1/100; IHC-00352 Bethyl Laboratories, Montgomery, TX, USA), mouse anti-PDX1 (1/200; F25A13B Developmental Studies Hybridoma Bank at the University of Iowa (Iowa City, IA, USA)), rabbit anti-PH3 (1/500; 06-570 Millipore, Merck KGaA, Darmstadt, Germany), rabbit anti-HNE (1/100; ab 46545 Abcam).

    Article Title: Pancreas lineage allocation and specification are regulated by sphingosine-1-phosphate signalling
    Article Snippet: Primary antibodies used were rabbit anti-Ngn3 (1:100; Acris), rat anti-E-cadherin (1:400; Zymed), rabbit anti-C-peptide (1:200; Linco), rabbit anti-Amylase (1:300; Sigma), rabbit anti-Ptf1a (1:3,000; Gift from B. Breant), rat anti-Cytokeratin19 (1:250; DSHB), mouse anti-Glucagon (1:500; Sigma), rabbit anti-Pdx1 (1:5,000; Gift from C. Wright), mouse anti-Pdx1 (1:250; DSHB), rabbit anti-Sphk (1:250; Abcam), mouse anti-Nkx6-1 (1:1,000; DSHB), mouse anti-Insulin (1:1,000; Sigma), rabbit anti-PH3 (1:500; Cell Signaling), rabbit anti-Yap1 (1:200; Cell Signaling), rabbit anti-NICD (1:100; Cell Signaling), rat anti-Hes1 (1:500; MBL-Biozol), and rabbit anti-Sel1l (1:250; Abcam).

    Article Title: Reprogramming of Pancreatic Exocrine Cells AR42J Into Insulin-producing Cells Using mRNAs for Pdx1, Ngn3, and MafA Transcription Factors
    Article Snippet: The following primary antibodies were used: rabbit anti-Pdx1 (1:200), rabbit anti-MafA (1:200), rabbit anti-insulin (1:300), mouse anti-C-peptide (1:100), mouse anti-glucagon (1:200) (Abcam, Cambridge, United Kingdom), mouse anti-Neurogenin3 (1:800), mouse anti-Pdx1 (1:400) (Developmental Studies Hybridoma Bank, Iowa City, IA), and rabbit anti-α-amylase (1:200) (Sigma-Aldrich).

    Article Title: The Transcription Factor Myt3 Acts as a Pro-Survival Factor in β-cells
    Article Snippet: Sections were co-stained with rabbit anti-Myt3 (1/250) and guinea pig anti-Insulin (1/1000; Linco), guinea pig anti-Glucagon (1/1000; Linco), guinea pig anti-PP (1/100; Linco), goat anti-Somatostatin (1/1000; Santa Cruz) or mouse anti-Pdx1 (1/500; DSHB).

    Article Title: ALDH1B1 is a potential stem / progenitor marker for multiple pancreas progenitor pools
    Article Snippet: Primary antibodies used were: rabbit anti–ALDH1B1 (1:500) ( Stagos et al., 2010 ) rabbit anti-NGN3 (1:200; gift from H. Edlund), rat anti-E-CADHERIN (1:400; Zymed), rat anti-CYTOKERATIN 19 (anti-CK-19; 1:250; DSHB), mouse anti-INSULIN (1:1,000; Sigma), mouse anti-GLUCAGON (1:500; Sigma), mouse anti-BrdU (1:200 DAKO), mouse anti-PDX1 (1:300, DSHB), rabbit anti-AMYLASE (1:300, Sigma), rabbit anti-SOX9 (1:500; Chemicon), PNA-FITC lectin (1:100, Sigma), DBA-Rhodamine (1:100, Vector Laboratories).

    Article Title: VHL-mediated disruption of Sox9 activity compromises β-cell identity and results in diabetes mellitus
    Article Snippet: The following primary antibodies were used: guinea pig anti-insulin (1:300; Millipore), mouse anti-insulin (1:300; Sigma), guinea pig anti-insulin (1:200; Dako North America, Inc.), rabbit anti-glucagon (1:300), guinea pig anti-glucagon (1:300; Millipore), mouse anti-glucagon (1:500; Sigma), rabbit anti-Glut2 (1:500), rabbit anti-Sox9 (1:200; Chemicon), rat anti-somatostatin (1:200; Millipore), mouse anti-Nkx6.1 (1:200; Developmental Studies Hybridoma Bank), rabbit anti-MafA (1:200; Bethyl Laboratories, Inc.), guinea pig anti-Pdx1 (1:200; gift from Mike German, University of California at San Francisco), mouse anti-Pdx1 (1:200; Developmental Studies Hybridoma Bank), rabbit anti-Pdx-1 (1:200; Chemicon), goat anti-Pdx-1 (1:200; R&D Systems), rabbit anti-cleaved caspase-3 (1:200; Cell Signaling), rat anti-HA (1:200; Roche Applied Science), mouse anti-synaptophysin (1:200; Biogenex), goat anti-NeuroD (1:200; Santa Cruz Biotechnology), and mouse anti-β-catenin (1:200; BD Biosciences).

    ChIP-sequencing:

    Article Title: p43, a Truncated Form of Thyroid Hormone Receptor α, Regulates Maturation of Pancreatic β Cells
    Article Snippet: The following antibodies were used: guinea pig anti-insulin (1/250; ab7842 Abcam, Cambridge, UK), mouse anti-glucagon (1/100; ab10988 Abcam), rabbit anti-MafA (1/100; IHC-00352 Bethyl Laboratories, Montgomery, TX, USA), mouse anti-PDX1 (1/200; F25A13B Developmental Studies Hybridoma Bank at the University of Iowa (Iowa City, IA, USA)), rabbit anti-PH3 (1/500; 06-570 Millipore, Merck KGaA, Darmstadt, Germany), rabbit anti-HNE (1/100; ab 46545 Abcam).

    Article Title: Pancreas lineage allocation and specification are regulated by sphingosine-1-phosphate signalling
    Article Snippet: Primary antibodies used were rabbit anti-Ngn3 (1:100; Acris), rat anti-E-cadherin (1:400; Zymed), rabbit anti-C-peptide (1:200; Linco), rabbit anti-Amylase (1:300; Sigma), rabbit anti-Ptf1a (1:3,000; Gift from B. Breant), rat anti-Cytokeratin19 (1:250; DSHB), mouse anti-Glucagon (1:500; Sigma), rabbit anti-Pdx1 (1:5,000; Gift from C. Wright), mouse anti-Pdx1 (1:250; DSHB), rabbit anti-Sphk (1:250; Abcam), mouse anti-Nkx6-1 (1:1,000; DSHB), mouse anti-Insulin (1:1,000; Sigma), rabbit anti-PH3 (1:500; Cell Signaling), rabbit anti-Yap1 (1:200; Cell Signaling), rabbit anti-NICD (1:100; Cell Signaling), rat anti-Hes1 (1:500; MBL-Biozol), and rabbit anti-Sel1l (1:250; Abcam).

    Article Title: Reprogramming of Pancreatic Exocrine Cells AR42J Into Insulin-producing Cells Using mRNAs for Pdx1, Ngn3, and MafA Transcription Factors
    Article Snippet: The following primary antibodies were used: rabbit anti-Pdx1 (1:200), rabbit anti-MafA (1:200), rabbit anti-insulin (1:300), mouse anti-C-peptide (1:100), mouse anti-glucagon (1:200) (Abcam, Cambridge, United Kingdom), mouse anti-Neurogenin3 (1:800), mouse anti-Pdx1 (1:400) (Developmental Studies Hybridoma Bank, Iowa City, IA), and rabbit anti-α-amylase (1:200) (Sigma-Aldrich).

    Article Title: The Transcription Factor Myt3 Acts as a Pro-Survival Factor in β-cells
    Article Snippet: Sections were co-stained with rabbit anti-Myt3 (1/250) and guinea pig anti-Insulin (1/1000; Linco), guinea pig anti-Glucagon (1/1000; Linco), guinea pig anti-PP (1/100; Linco), goat anti-Somatostatin (1/1000; Santa Cruz) or mouse anti-Pdx1 (1/500; DSHB).

    Article Title: ALDH1B1 is a potential stem / progenitor marker for multiple pancreas progenitor pools
    Article Snippet: Primary antibodies used were: rabbit anti–ALDH1B1 (1:500) ( Stagos et al., 2010 ) rabbit anti-NGN3 (1:200; gift from H. Edlund), rat anti-E-CADHERIN (1:400; Zymed), rat anti-CYTOKERATIN 19 (anti-CK-19; 1:250; DSHB), mouse anti-INSULIN (1:1,000; Sigma), mouse anti-GLUCAGON (1:500; Sigma), mouse anti-BrdU (1:200 DAKO), mouse anti-PDX1 (1:300, DSHB), rabbit anti-AMYLASE (1:300, Sigma), rabbit anti-SOX9 (1:500; Chemicon), PNA-FITC lectin (1:100, Sigma), DBA-Rhodamine (1:100, Vector Laboratories).

    Article Title: VHL-mediated disruption of Sox9 activity compromises β-cell identity and results in diabetes mellitus
    Article Snippet: The following primary antibodies were used: guinea pig anti-insulin (1:300; Millipore), mouse anti-insulin (1:300; Sigma), guinea pig anti-insulin (1:200; Dako North America, Inc.), rabbit anti-glucagon (1:300), guinea pig anti-glucagon (1:300; Millipore), mouse anti-glucagon (1:500; Sigma), rabbit anti-Glut2 (1:500), rabbit anti-Sox9 (1:200; Chemicon), rat anti-somatostatin (1:200; Millipore), mouse anti-Nkx6.1 (1:200; Developmental Studies Hybridoma Bank), rabbit anti-MafA (1:200; Bethyl Laboratories, Inc.), guinea pig anti-Pdx1 (1:200; gift from Mike German, University of California at San Francisco), mouse anti-Pdx1 (1:200; Developmental Studies Hybridoma Bank), rabbit anti-Pdx-1 (1:200; Chemicon), goat anti-Pdx-1 (1:200; R&D Systems), rabbit anti-cleaved caspase-3 (1:200; Cell Signaling), rat anti-HA (1:200; Roche Applied Science), mouse anti-synaptophysin (1:200; Biogenex), goat anti-NeuroD (1:200; Santa Cruz Biotechnology), and mouse anti-β-catenin (1:200; BD Biosciences).

    Binding Assay:

    Article Title: p43, a Truncated Form of Thyroid Hormone Receptor α, Regulates Maturation of Pancreatic β Cells
    Article Snippet: The following antibodies were used: guinea pig anti-insulin (1/250; ab7842 Abcam, Cambridge, UK), mouse anti-glucagon (1/100; ab10988 Abcam), rabbit anti-MafA (1/100; IHC-00352 Bethyl Laboratories, Montgomery, TX, USA), mouse anti-PDX1 (1/200; F25A13B Developmental Studies Hybridoma Bank at the University of Iowa (Iowa City, IA, USA)), rabbit anti-PH3 (1/500; 06-570 Millipore, Merck KGaA, Darmstadt, Germany), rabbit anti-HNE (1/100; ab 46545 Abcam).

    Article Title: Pancreas lineage allocation and specification are regulated by sphingosine-1-phosphate signalling
    Article Snippet: Primary antibodies used were rabbit anti-Ngn3 (1:100; Acris), rat anti-E-cadherin (1:400; Zymed), rabbit anti-C-peptide (1:200; Linco), rabbit anti-Amylase (1:300; Sigma), rabbit anti-Ptf1a (1:3,000; Gift from B. Breant), rat anti-Cytokeratin19 (1:250; DSHB), mouse anti-Glucagon (1:500; Sigma), rabbit anti-Pdx1 (1:5,000; Gift from C. Wright), mouse anti-Pdx1 (1:250; DSHB), rabbit anti-Sphk (1:250; Abcam), mouse anti-Nkx6-1 (1:1,000; DSHB), mouse anti-Insulin (1:1,000; Sigma), rabbit anti-PH3 (1:500; Cell Signaling), rabbit anti-Yap1 (1:200; Cell Signaling), rabbit anti-NICD (1:100; Cell Signaling), rat anti-Hes1 (1:500; MBL-Biozol), and rabbit anti-Sel1l (1:250; Abcam).

    Article Title: Reprogramming of Pancreatic Exocrine Cells AR42J Into Insulin-producing Cells Using mRNAs for Pdx1, Ngn3, and MafA Transcription Factors
    Article Snippet: The following primary antibodies were used: rabbit anti-Pdx1 (1:200), rabbit anti-MafA (1:200), rabbit anti-insulin (1:300), mouse anti-C-peptide (1:100), mouse anti-glucagon (1:200) (Abcam, Cambridge, United Kingdom), mouse anti-Neurogenin3 (1:800), mouse anti-Pdx1 (1:400) (Developmental Studies Hybridoma Bank, Iowa City, IA), and rabbit anti-α-amylase (1:200) (Sigma-Aldrich).

    Article Title: The Transcription Factor Myt3 Acts as a Pro-Survival Factor in β-cells
    Article Snippet: Sections were co-stained with rabbit anti-Myt3 (1/250) and guinea pig anti-Insulin (1/1000; Linco), guinea pig anti-Glucagon (1/1000; Linco), guinea pig anti-PP (1/100; Linco), goat anti-Somatostatin (1/1000; Santa Cruz) or mouse anti-Pdx1 (1/500; DSHB).

    Article Title: ALDH1B1 is a potential stem / progenitor marker for multiple pancreas progenitor pools
    Article Snippet: Primary antibodies used were: rabbit anti–ALDH1B1 (1:500) ( Stagos et al., 2010 ) rabbit anti-NGN3 (1:200; gift from H. Edlund), rat anti-E-CADHERIN (1:400; Zymed), rat anti-CYTOKERATIN 19 (anti-CK-19; 1:250; DSHB), mouse anti-INSULIN (1:1,000; Sigma), mouse anti-GLUCAGON (1:500; Sigma), mouse anti-BrdU (1:200 DAKO), mouse anti-PDX1 (1:300, DSHB), rabbit anti-AMYLASE (1:300, Sigma), rabbit anti-SOX9 (1:500; Chemicon), PNA-FITC lectin (1:100, Sigma), DBA-Rhodamine (1:100, Vector Laboratories).

    Article Title: VHL-mediated disruption of Sox9 activity compromises β-cell identity and results in diabetes mellitus
    Article Snippet: The following primary antibodies were used: guinea pig anti-insulin (1:300; Millipore), mouse anti-insulin (1:300; Sigma), guinea pig anti-insulin (1:200; Dako North America, Inc.), rabbit anti-glucagon (1:300), guinea pig anti-glucagon (1:300; Millipore), mouse anti-glucagon (1:500; Sigma), rabbit anti-Glut2 (1:500), rabbit anti-Sox9 (1:200; Chemicon), rat anti-somatostatin (1:200; Millipore), mouse anti-Nkx6.1 (1:200; Developmental Studies Hybridoma Bank), rabbit anti-MafA (1:200; Bethyl Laboratories, Inc.), guinea pig anti-Pdx1 (1:200; gift from Mike German, University of California at San Francisco), mouse anti-Pdx1 (1:200; Developmental Studies Hybridoma Bank), rabbit anti-Pdx-1 (1:200; Chemicon), goat anti-Pdx-1 (1:200; R&D Systems), rabbit anti-cleaved caspase-3 (1:200; Cell Signaling), rat anti-HA (1:200; Roche Applied Science), mouse anti-synaptophysin (1:200; Biogenex), goat anti-NeuroD (1:200; Santa Cruz Biotechnology), and mouse anti-β-catenin (1:200; BD Biosciences).

    Luciferase:

    Article Title: p43, a Truncated Form of Thyroid Hormone Receptor α, Regulates Maturation of Pancreatic β Cells
    Article Snippet: The following antibodies were used: guinea pig anti-insulin (1/250; ab7842 Abcam, Cambridge, UK), mouse anti-glucagon (1/100; ab10988 Abcam), rabbit anti-MafA (1/100; IHC-00352 Bethyl Laboratories, Montgomery, TX, USA), mouse anti-PDX1 (1/200; F25A13B Developmental Studies Hybridoma Bank at the University of Iowa (Iowa City, IA, USA)), rabbit anti-PH3 (1/500; 06-570 Millipore, Merck KGaA, Darmstadt, Germany), rabbit anti-HNE (1/100; ab 46545 Abcam).

    Article Title: Pancreas lineage allocation and specification are regulated by sphingosine-1-phosphate signalling
    Article Snippet: Primary antibodies used were rabbit anti-Ngn3 (1:100; Acris), rat anti-E-cadherin (1:400; Zymed), rabbit anti-C-peptide (1:200; Linco), rabbit anti-Amylase (1:300; Sigma), rabbit anti-Ptf1a (1:3,000; Gift from B. Breant), rat anti-Cytokeratin19 (1:250; DSHB), mouse anti-Glucagon (1:500; Sigma), rabbit anti-Pdx1 (1:5,000; Gift from C. Wright), mouse anti-Pdx1 (1:250; DSHB), rabbit anti-Sphk (1:250; Abcam), mouse anti-Nkx6-1 (1:1,000; DSHB), mouse anti-Insulin (1:1,000; Sigma), rabbit anti-PH3 (1:500; Cell Signaling), rabbit anti-Yap1 (1:200; Cell Signaling), rabbit anti-NICD (1:100; Cell Signaling), rat anti-Hes1 (1:500; MBL-Biozol), and rabbit anti-Sel1l (1:250; Abcam).

    Article Title: Reprogramming of Pancreatic Exocrine Cells AR42J Into Insulin-producing Cells Using mRNAs for Pdx1, Ngn3, and MafA Transcription Factors
    Article Snippet: The following primary antibodies were used: rabbit anti-Pdx1 (1:200), rabbit anti-MafA (1:200), rabbit anti-insulin (1:300), mouse anti-C-peptide (1:100), mouse anti-glucagon (1:200) (Abcam, Cambridge, United Kingdom), mouse anti-Neurogenin3 (1:800), mouse anti-Pdx1 (1:400) (Developmental Studies Hybridoma Bank, Iowa City, IA), and rabbit anti-α-amylase (1:200) (Sigma-Aldrich).

    Article Title: The Transcription Factor Myt3 Acts as a Pro-Survival Factor in β-cells
    Article Snippet: Sections were co-stained with rabbit anti-Myt3 (1/250) and guinea pig anti-Insulin (1/1000; Linco), guinea pig anti-Glucagon (1/1000; Linco), guinea pig anti-PP (1/100; Linco), goat anti-Somatostatin (1/1000; Santa Cruz) or mouse anti-Pdx1 (1/500; DSHB).

    Article Title: ALDH1B1 is a potential stem / progenitor marker for multiple pancreas progenitor pools
    Article Snippet: Primary antibodies used were: rabbit anti–ALDH1B1 (1:500) ( Stagos et al., 2010 ) rabbit anti-NGN3 (1:200; gift from H. Edlund), rat anti-E-CADHERIN (1:400; Zymed), rat anti-CYTOKERATIN 19 (anti-CK-19; 1:250; DSHB), mouse anti-INSULIN (1:1,000; Sigma), mouse anti-GLUCAGON (1:500; Sigma), mouse anti-BrdU (1:200 DAKO), mouse anti-PDX1 (1:300, DSHB), rabbit anti-AMYLASE (1:300, Sigma), rabbit anti-SOX9 (1:500; Chemicon), PNA-FITC lectin (1:100, Sigma), DBA-Rhodamine (1:100, Vector Laboratories).

    Article Title: VHL-mediated disruption of Sox9 activity compromises β-cell identity and results in diabetes mellitus
    Article Snippet: The following primary antibodies were used: guinea pig anti-insulin (1:300; Millipore), mouse anti-insulin (1:300; Sigma), guinea pig anti-insulin (1:200; Dako North America, Inc.), rabbit anti-glucagon (1:300), guinea pig anti-glucagon (1:300; Millipore), mouse anti-glucagon (1:500; Sigma), rabbit anti-Glut2 (1:500), rabbit anti-Sox9 (1:200; Chemicon), rat anti-somatostatin (1:200; Millipore), mouse anti-Nkx6.1 (1:200; Developmental Studies Hybridoma Bank), rabbit anti-MafA (1:200; Bethyl Laboratories, Inc.), guinea pig anti-Pdx1 (1:200; gift from Mike German, University of California at San Francisco), mouse anti-Pdx1 (1:200; Developmental Studies Hybridoma Bank), rabbit anti-Pdx-1 (1:200; Chemicon), goat anti-Pdx-1 (1:200; R&D Systems), rabbit anti-cleaved caspase-3 (1:200; Cell Signaling), rat anti-HA (1:200; Roche Applied Science), mouse anti-synaptophysin (1:200; Biogenex), goat anti-NeuroD (1:200; Santa Cruz Biotechnology), and mouse anti-β-catenin (1:200; BD Biosciences).

    Activity Assay:

    Article Title: p43, a Truncated Form of Thyroid Hormone Receptor α, Regulates Maturation of Pancreatic β Cells
    Article Snippet: The following antibodies were used: guinea pig anti-insulin (1/250; ab7842 Abcam, Cambridge, UK), mouse anti-glucagon (1/100; ab10988 Abcam), rabbit anti-MafA (1/100; IHC-00352 Bethyl Laboratories, Montgomery, TX, USA), mouse anti-PDX1 (1/200; F25A13B Developmental Studies Hybridoma Bank at the University of Iowa (Iowa City, IA, USA)), rabbit anti-PH3 (1/500; 06-570 Millipore, Merck KGaA, Darmstadt, Germany), rabbit anti-HNE (1/100; ab 46545 Abcam).

    Article Title: Pancreas lineage allocation and specification are regulated by sphingosine-1-phosphate signalling
    Article Snippet: Primary antibodies used were rabbit anti-Ngn3 (1:100; Acris), rat anti-E-cadherin (1:400; Zymed), rabbit anti-C-peptide (1:200; Linco), rabbit anti-Amylase (1:300; Sigma), rabbit anti-Ptf1a (1:3,000; Gift from B. Breant), rat anti-Cytokeratin19 (1:250; DSHB), mouse anti-Glucagon (1:500; Sigma), rabbit anti-Pdx1 (1:5,000; Gift from C. Wright), mouse anti-Pdx1 (1:250; DSHB), rabbit anti-Sphk (1:250; Abcam), mouse anti-Nkx6-1 (1:1,000; DSHB), mouse anti-Insulin (1:1,000; Sigma), rabbit anti-PH3 (1:500; Cell Signaling), rabbit anti-Yap1 (1:200; Cell Signaling), rabbit anti-NICD (1:100; Cell Signaling), rat anti-Hes1 (1:500; MBL-Biozol), and rabbit anti-Sel1l (1:250; Abcam).

    Article Title: Reprogramming of Pancreatic Exocrine Cells AR42J Into Insulin-producing Cells Using mRNAs for Pdx1, Ngn3, and MafA Transcription Factors
    Article Snippet: The following primary antibodies were used: rabbit anti-Pdx1 (1:200), rabbit anti-MafA (1:200), rabbit anti-insulin (1:300), mouse anti-C-peptide (1:100), mouse anti-glucagon (1:200) (Abcam, Cambridge, United Kingdom), mouse anti-Neurogenin3 (1:800), mouse anti-Pdx1 (1:400) (Developmental Studies Hybridoma Bank, Iowa City, IA), and rabbit anti-α-amylase (1:200) (Sigma-Aldrich).

    Article Title: The Transcription Factor Myt3 Acts as a Pro-Survival Factor in β-cells
    Article Snippet: Sections were co-stained with rabbit anti-Myt3 (1/250) and guinea pig anti-Insulin (1/1000; Linco), guinea pig anti-Glucagon (1/1000; Linco), guinea pig anti-PP (1/100; Linco), goat anti-Somatostatin (1/1000; Santa Cruz) or mouse anti-Pdx1 (1/500; DSHB).

    Article Title: ALDH1B1 is a potential stem / progenitor marker for multiple pancreas progenitor pools
    Article Snippet: Primary antibodies used were: rabbit anti–ALDH1B1 (1:500) ( Stagos et al., 2010 ) rabbit anti-NGN3 (1:200; gift from H. Edlund), rat anti-E-CADHERIN (1:400; Zymed), rat anti-CYTOKERATIN 19 (anti-CK-19; 1:250; DSHB), mouse anti-INSULIN (1:1,000; Sigma), mouse anti-GLUCAGON (1:500; Sigma), mouse anti-BrdU (1:200 DAKO), mouse anti-PDX1 (1:300, DSHB), rabbit anti-AMYLASE (1:300, Sigma), rabbit anti-SOX9 (1:500; Chemicon), PNA-FITC lectin (1:100, Sigma), DBA-Rhodamine (1:100, Vector Laboratories).

    Article Title: VHL-mediated disruption of Sox9 activity compromises β-cell identity and results in diabetes mellitus
    Article Snippet: The following primary antibodies were used: guinea pig anti-insulin (1:300; Millipore), mouse anti-insulin (1:300; Sigma), guinea pig anti-insulin (1:200; Dako North America, Inc.), rabbit anti-glucagon (1:300), guinea pig anti-glucagon (1:300; Millipore), mouse anti-glucagon (1:500; Sigma), rabbit anti-Glut2 (1:500), rabbit anti-Sox9 (1:200; Chemicon), rat anti-somatostatin (1:200; Millipore), mouse anti-Nkx6.1 (1:200; Developmental Studies Hybridoma Bank), rabbit anti-MafA (1:200; Bethyl Laboratories, Inc.), guinea pig anti-Pdx1 (1:200; gift from Mike German, University of California at San Francisco), mouse anti-Pdx1 (1:200; Developmental Studies Hybridoma Bank), rabbit anti-Pdx-1 (1:200; Chemicon), goat anti-Pdx-1 (1:200; R&D Systems), rabbit anti-cleaved caspase-3 (1:200; Cell Signaling), rat anti-HA (1:200; Roche Applied Science), mouse anti-synaptophysin (1:200; Biogenex), goat anti-NeuroD (1:200; Santa Cruz Biotechnology), and mouse anti-β-catenin (1:200; BD Biosciences).

    Transfection:

    Article Title: p43, a Truncated Form of Thyroid Hormone Receptor α, Regulates Maturation of Pancreatic β Cells
    Article Snippet: The following antibodies were used: guinea pig anti-insulin (1/250; ab7842 Abcam, Cambridge, UK), mouse anti-glucagon (1/100; ab10988 Abcam), rabbit anti-MafA (1/100; IHC-00352 Bethyl Laboratories, Montgomery, TX, USA), mouse anti-PDX1 (1/200; F25A13B Developmental Studies Hybridoma Bank at the University of Iowa (Iowa City, IA, USA)), rabbit anti-PH3 (1/500; 06-570 Millipore, Merck KGaA, Darmstadt, Germany), rabbit anti-HNE (1/100; ab 46545 Abcam).

    Article Title: Pancreas lineage allocation and specification are regulated by sphingosine-1-phosphate signalling
    Article Snippet: Primary antibodies used were rabbit anti-Ngn3 (1:100; Acris), rat anti-E-cadherin (1:400; Zymed), rabbit anti-C-peptide (1:200; Linco), rabbit anti-Amylase (1:300; Sigma), rabbit anti-Ptf1a (1:3,000; Gift from B. Breant), rat anti-Cytokeratin19 (1:250; DSHB), mouse anti-Glucagon (1:500; Sigma), rabbit anti-Pdx1 (1:5,000; Gift from C. Wright), mouse anti-Pdx1 (1:250; DSHB), rabbit anti-Sphk (1:250; Abcam), mouse anti-Nkx6-1 (1:1,000; DSHB), mouse anti-Insulin (1:1,000; Sigma), rabbit anti-PH3 (1:500; Cell Signaling), rabbit anti-Yap1 (1:200; Cell Signaling), rabbit anti-NICD (1:100; Cell Signaling), rat anti-Hes1 (1:500; MBL-Biozol), and rabbit anti-Sel1l (1:250; Abcam).

    Article Title: Reprogramming of Pancreatic Exocrine Cells AR42J Into Insulin-producing Cells Using mRNAs for Pdx1, Ngn3, and MafA Transcription Factors
    Article Snippet: The following primary antibodies were used: rabbit anti-Pdx1 (1:200), rabbit anti-MafA (1:200), rabbit anti-insulin (1:300), mouse anti-C-peptide (1:100), mouse anti-glucagon (1:200) (Abcam, Cambridge, United Kingdom), mouse anti-Neurogenin3 (1:800), mouse anti-Pdx1 (1:400) (Developmental Studies Hybridoma Bank, Iowa City, IA), and rabbit anti-α-amylase (1:200) (Sigma-Aldrich).

    Article Title: The Transcription Factor Myt3 Acts as a Pro-Survival Factor in β-cells
    Article Snippet: Sections were co-stained with rabbit anti-Myt3 (1/250) and guinea pig anti-Insulin (1/1000; Linco), guinea pig anti-Glucagon (1/1000; Linco), guinea pig anti-PP (1/100; Linco), goat anti-Somatostatin (1/1000; Santa Cruz) or mouse anti-Pdx1 (1/500; DSHB).

    Article Title: ALDH1B1 is a potential stem / progenitor marker for multiple pancreas progenitor pools
    Article Snippet: Primary antibodies used were: rabbit anti–ALDH1B1 (1:500) ( Stagos et al., 2010 ) rabbit anti-NGN3 (1:200; gift from H. Edlund), rat anti-E-CADHERIN (1:400; Zymed), rat anti-CYTOKERATIN 19 (anti-CK-19; 1:250; DSHB), mouse anti-INSULIN (1:1,000; Sigma), mouse anti-GLUCAGON (1:500; Sigma), mouse anti-BrdU (1:200 DAKO), mouse anti-PDX1 (1:300, DSHB), rabbit anti-AMYLASE (1:300, Sigma), rabbit anti-SOX9 (1:500; Chemicon), PNA-FITC lectin (1:100, Sigma), DBA-Rhodamine (1:100, Vector Laboratories).

    Article Title: VHL-mediated disruption of Sox9 activity compromises β-cell identity and results in diabetes mellitus
    Article Snippet: The following primary antibodies were used: guinea pig anti-insulin (1:300; Millipore), mouse anti-insulin (1:300; Sigma), guinea pig anti-insulin (1:200; Dako North America, Inc.), rabbit anti-glucagon (1:300), guinea pig anti-glucagon (1:300; Millipore), mouse anti-glucagon (1:500; Sigma), rabbit anti-Glut2 (1:500), rabbit anti-Sox9 (1:200; Chemicon), rat anti-somatostatin (1:200; Millipore), mouse anti-Nkx6.1 (1:200; Developmental Studies Hybridoma Bank), rabbit anti-MafA (1:200; Bethyl Laboratories, Inc.), guinea pig anti-Pdx1 (1:200; gift from Mike German, University of California at San Francisco), mouse anti-Pdx1 (1:200; Developmental Studies Hybridoma Bank), rabbit anti-Pdx-1 (1:200; Chemicon), goat anti-Pdx-1 (1:200; R&D Systems), rabbit anti-cleaved caspase-3 (1:200; Cell Signaling), rat anti-HA (1:200; Roche Applied Science), mouse anti-synaptophysin (1:200; Biogenex), goat anti-NeuroD (1:200; Santa Cruz Biotechnology), and mouse anti-β-catenin (1:200; BD Biosciences).

    Plasmid Preparation:

    Article Title: p43, a Truncated Form of Thyroid Hormone Receptor α, Regulates Maturation of Pancreatic β Cells
    Article Snippet: The following antibodies were used: guinea pig anti-insulin (1/250; ab7842 Abcam, Cambridge, UK), mouse anti-glucagon (1/100; ab10988 Abcam), rabbit anti-MafA (1/100; IHC-00352 Bethyl Laboratories, Montgomery, TX, USA), mouse anti-PDX1 (1/200; F25A13B Developmental Studies Hybridoma Bank at the University of Iowa (Iowa City, IA, USA)), rabbit anti-PH3 (1/500; 06-570 Millipore, Merck KGaA, Darmstadt, Germany), rabbit anti-HNE (1/100; ab 46545 Abcam).

    Article Title: Pancreas lineage allocation and specification are regulated by sphingosine-1-phosphate signalling
    Article Snippet: Primary antibodies used were rabbit anti-Ngn3 (1:100; Acris), rat anti-E-cadherin (1:400; Zymed), rabbit anti-C-peptide (1:200; Linco), rabbit anti-Amylase (1:300; Sigma), rabbit anti-Ptf1a (1:3,000; Gift from B. Breant), rat anti-Cytokeratin19 (1:250; DSHB), mouse anti-Glucagon (1:500; Sigma), rabbit anti-Pdx1 (1:5,000; Gift from C. Wright), mouse anti-Pdx1 (1:250; DSHB), rabbit anti-Sphk (1:250; Abcam), mouse anti-Nkx6-1 (1:1,000; DSHB), mouse anti-Insulin (1:1,000; Sigma), rabbit anti-PH3 (1:500; Cell Signaling), rabbit anti-Yap1 (1:200; Cell Signaling), rabbit anti-NICD (1:100; Cell Signaling), rat anti-Hes1 (1:500; MBL-Biozol), and rabbit anti-Sel1l (1:250; Abcam).

    Article Title: Reprogramming of Pancreatic Exocrine Cells AR42J Into Insulin-producing Cells Using mRNAs for Pdx1, Ngn3, and MafA Transcription Factors
    Article Snippet: The following primary antibodies were used: rabbit anti-Pdx1 (1:200), rabbit anti-MafA (1:200), rabbit anti-insulin (1:300), mouse anti-C-peptide (1:100), mouse anti-glucagon (1:200) (Abcam, Cambridge, United Kingdom), mouse anti-Neurogenin3 (1:800), mouse anti-Pdx1 (1:400) (Developmental Studies Hybridoma Bank, Iowa City, IA), and rabbit anti-α-amylase (1:200) (Sigma-Aldrich).

    Article Title: The Transcription Factor Myt3 Acts as a Pro-Survival Factor in β-cells
    Article Snippet: Sections were co-stained with rabbit anti-Myt3 (1/250) and guinea pig anti-Insulin (1/1000; Linco), guinea pig anti-Glucagon (1/1000; Linco), guinea pig anti-PP (1/100; Linco), goat anti-Somatostatin (1/1000; Santa Cruz) or mouse anti-Pdx1 (1/500; DSHB).

    Article Title: ALDH1B1 is a potential stem / progenitor marker for multiple pancreas progenitor pools
    Article Snippet: Primary antibodies used were: rabbit anti–ALDH1B1 (1:500) ( Stagos et al., 2010 ) rabbit anti-NGN3 (1:200; gift from H. Edlund), rat anti-E-CADHERIN (1:400; Zymed), rat anti-CYTOKERATIN 19 (anti-CK-19; 1:250; DSHB), mouse anti-INSULIN (1:1,000; Sigma), mouse anti-GLUCAGON (1:500; Sigma), mouse anti-BrdU (1:200 DAKO), mouse anti-PDX1 (1:300, DSHB), rabbit anti-AMYLASE (1:300, Sigma), rabbit anti-SOX9 (1:500; Chemicon), PNA-FITC lectin (1:100, Sigma), DBA-Rhodamine (1:100, Vector Laboratories).

    Article Title: VHL-mediated disruption of Sox9 activity compromises β-cell identity and results in diabetes mellitus
    Article Snippet: The following primary antibodies were used: guinea pig anti-insulin (1:300; Millipore), mouse anti-insulin (1:300; Sigma), guinea pig anti-insulin (1:200; Dako North America, Inc.), rabbit anti-glucagon (1:300), guinea pig anti-glucagon (1:300; Millipore), mouse anti-glucagon (1:500; Sigma), rabbit anti-Glut2 (1:500), rabbit anti-Sox9 (1:200; Chemicon), rat anti-somatostatin (1:200; Millipore), mouse anti-Nkx6.1 (1:200; Developmental Studies Hybridoma Bank), rabbit anti-MafA (1:200; Bethyl Laboratories, Inc.), guinea pig anti-Pdx1 (1:200; gift from Mike German, University of California at San Francisco), mouse anti-Pdx1 (1:200; Developmental Studies Hybridoma Bank), rabbit anti-Pdx-1 (1:200; Chemicon), goat anti-Pdx-1 (1:200; R&D Systems), rabbit anti-cleaved caspase-3 (1:200; Cell Signaling), rat anti-HA (1:200; Roche Applied Science), mouse anti-synaptophysin (1:200; Biogenex), goat anti-NeuroD (1:200; Santa Cruz Biotechnology), and mouse anti-β-catenin (1:200; BD Biosciences).

    Mutagenesis:

    Article Title: p43, a Truncated Form of Thyroid Hormone Receptor α, Regulates Maturation of Pancreatic β Cells
    Article Snippet: The following antibodies were used: guinea pig anti-insulin (1/250; ab7842 Abcam, Cambridge, UK), mouse anti-glucagon (1/100; ab10988 Abcam), rabbit anti-MafA (1/100; IHC-00352 Bethyl Laboratories, Montgomery, TX, USA), mouse anti-PDX1 (1/200; F25A13B Developmental Studies Hybridoma Bank at the University of Iowa (Iowa City, IA, USA)), rabbit anti-PH3 (1/500; 06-570 Millipore, Merck KGaA, Darmstadt, Germany), rabbit anti-HNE (1/100; ab 46545 Abcam).

    Article Title: Pancreas lineage allocation and specification are regulated by sphingosine-1-phosphate signalling
    Article Snippet: Primary antibodies used were rabbit anti-Ngn3 (1:100; Acris), rat anti-E-cadherin (1:400; Zymed), rabbit anti-C-peptide (1:200; Linco), rabbit anti-Amylase (1:300; Sigma), rabbit anti-Ptf1a (1:3,000; Gift from B. Breant), rat anti-Cytokeratin19 (1:250; DSHB), mouse anti-Glucagon (1:500; Sigma), rabbit anti-Pdx1 (1:5,000; Gift from C. Wright), mouse anti-Pdx1 (1:250; DSHB), rabbit anti-Sphk (1:250; Abcam), mouse anti-Nkx6-1 (1:1,000; DSHB), mouse anti-Insulin (1:1,000; Sigma), rabbit anti-PH3 (1:500; Cell Signaling), rabbit anti-Yap1 (1:200; Cell Signaling), rabbit anti-NICD (1:100; Cell Signaling), rat anti-Hes1 (1:500; MBL-Biozol), and rabbit anti-Sel1l (1:250; Abcam).

    Article Title: Reprogramming of Pancreatic Exocrine Cells AR42J Into Insulin-producing Cells Using mRNAs for Pdx1, Ngn3, and MafA Transcription Factors
    Article Snippet: The following primary antibodies were used: rabbit anti-Pdx1 (1:200), rabbit anti-MafA (1:200), rabbit anti-insulin (1:300), mouse anti-C-peptide (1:100), mouse anti-glucagon (1:200) (Abcam, Cambridge, United Kingdom), mouse anti-Neurogenin3 (1:800), mouse anti-Pdx1 (1:400) (Developmental Studies Hybridoma Bank, Iowa City, IA), and rabbit anti-α-amylase (1:200) (Sigma-Aldrich).

    Article Title: The Transcription Factor Myt3 Acts as a Pro-Survival Factor in β-cells
    Article Snippet: Sections were co-stained with rabbit anti-Myt3 (1/250) and guinea pig anti-Insulin (1/1000; Linco), guinea pig anti-Glucagon (1/1000; Linco), guinea pig anti-PP (1/100; Linco), goat anti-Somatostatin (1/1000; Santa Cruz) or mouse anti-Pdx1 (1/500; DSHB).

    Article Title: ALDH1B1 is a potential stem / progenitor marker for multiple pancreas progenitor pools
    Article Snippet: Primary antibodies used were: rabbit anti–ALDH1B1 (1:500) ( Stagos et al., 2010 ) rabbit anti-NGN3 (1:200; gift from H. Edlund), rat anti-E-CADHERIN (1:400; Zymed), rat anti-CYTOKERATIN 19 (anti-CK-19; 1:250; DSHB), mouse anti-INSULIN (1:1,000; Sigma), mouse anti-GLUCAGON (1:500; Sigma), mouse anti-BrdU (1:200 DAKO), mouse anti-PDX1 (1:300, DSHB), rabbit anti-AMYLASE (1:300, Sigma), rabbit anti-SOX9 (1:500; Chemicon), PNA-FITC lectin (1:100, Sigma), DBA-Rhodamine (1:100, Vector Laboratories).

    Article Title: VHL-mediated disruption of Sox9 activity compromises β-cell identity and results in diabetes mellitus
    Article Snippet: The following primary antibodies were used: guinea pig anti-insulin (1:300; Millipore), mouse anti-insulin (1:300; Sigma), guinea pig anti-insulin (1:200; Dako North America, Inc.), rabbit anti-glucagon (1:300), guinea pig anti-glucagon (1:300; Millipore), mouse anti-glucagon (1:500; Sigma), rabbit anti-Glut2 (1:500), rabbit anti-Sox9 (1:200; Chemicon), rat anti-somatostatin (1:200; Millipore), mouse anti-Nkx6.1 (1:200; Developmental Studies Hybridoma Bank), rabbit anti-MafA (1:200; Bethyl Laboratories, Inc.), guinea pig anti-Pdx1 (1:200; gift from Mike German, University of California at San Francisco), mouse anti-Pdx1 (1:200; Developmental Studies Hybridoma Bank), rabbit anti-Pdx-1 (1:200; Chemicon), goat anti-Pdx-1 (1:200; R&D Systems), rabbit anti-cleaved caspase-3 (1:200; Cell Signaling), rat anti-HA (1:200; Roche Applied Science), mouse anti-synaptophysin (1:200; Biogenex), goat anti-NeuroD (1:200; Santa Cruz Biotechnology), and mouse anti-β-catenin (1:200; BD Biosciences).

    Transduction:

    Article Title: p43, a Truncated Form of Thyroid Hormone Receptor α, Regulates Maturation of Pancreatic β Cells
    Article Snippet: The following antibodies were used: guinea pig anti-insulin (1/250; ab7842 Abcam, Cambridge, UK), mouse anti-glucagon (1/100; ab10988 Abcam), rabbit anti-MafA (1/100; IHC-00352 Bethyl Laboratories, Montgomery, TX, USA), mouse anti-PDX1 (1/200; F25A13B Developmental Studies Hybridoma Bank at the University of Iowa (Iowa City, IA, USA)), rabbit anti-PH3 (1/500; 06-570 Millipore, Merck KGaA, Darmstadt, Germany), rabbit anti-HNE (1/100; ab 46545 Abcam).

    Article Title: Pancreas lineage allocation and specification are regulated by sphingosine-1-phosphate signalling
    Article Snippet: Primary antibodies used were rabbit anti-Ngn3 (1:100; Acris), rat anti-E-cadherin (1:400; Zymed), rabbit anti-C-peptide (1:200; Linco), rabbit anti-Amylase (1:300; Sigma), rabbit anti-Ptf1a (1:3,000; Gift from B. Breant), rat anti-Cytokeratin19 (1:250; DSHB), mouse anti-Glucagon (1:500; Sigma), rabbit anti-Pdx1 (1:5,000; Gift from C. Wright), mouse anti-Pdx1 (1:250; DSHB), rabbit anti-Sphk (1:250; Abcam), mouse anti-Nkx6-1 (1:1,000; DSHB), mouse anti-Insulin (1:1,000; Sigma), rabbit anti-PH3 (1:500; Cell Signaling), rabbit anti-Yap1 (1:200; Cell Signaling), rabbit anti-NICD (1:100; Cell Signaling), rat anti-Hes1 (1:500; MBL-Biozol), and rabbit anti-Sel1l (1:250; Abcam).

    Article Title: Reprogramming of Pancreatic Exocrine Cells AR42J Into Insulin-producing Cells Using mRNAs for Pdx1, Ngn3, and MafA Transcription Factors
    Article Snippet: The following primary antibodies were used: rabbit anti-Pdx1 (1:200), rabbit anti-MafA (1:200), rabbit anti-insulin (1:300), mouse anti-C-peptide (1:100), mouse anti-glucagon (1:200) (Abcam, Cambridge, United Kingdom), mouse anti-Neurogenin3 (1:800), mouse anti-Pdx1 (1:400) (Developmental Studies Hybridoma Bank, Iowa City, IA), and rabbit anti-α-amylase (1:200) (Sigma-Aldrich).

    Article Title: The Transcription Factor Myt3 Acts as a Pro-Survival Factor in β-cells
    Article Snippet: Sections were co-stained with rabbit anti-Myt3 (1/250) and guinea pig anti-Insulin (1/1000; Linco), guinea pig anti-Glucagon (1/1000; Linco), guinea pig anti-PP (1/100; Linco), goat anti-Somatostatin (1/1000; Santa Cruz) or mouse anti-Pdx1 (1/500; DSHB).

    Article Title: ALDH1B1 is a potential stem / progenitor marker for multiple pancreas progenitor pools
    Article Snippet: Primary antibodies used were: rabbit anti–ALDH1B1 (1:500) ( Stagos et al., 2010 ) rabbit anti-NGN3 (1:200; gift from H. Edlund), rat anti-E-CADHERIN (1:400; Zymed), rat anti-CYTOKERATIN 19 (anti-CK-19; 1:250; DSHB), mouse anti-INSULIN (1:1,000; Sigma), mouse anti-GLUCAGON (1:500; Sigma), mouse anti-BrdU (1:200 DAKO), mouse anti-PDX1 (1:300, DSHB), rabbit anti-AMYLASE (1:300, Sigma), rabbit anti-SOX9 (1:500; Chemicon), PNA-FITC lectin (1:100, Sigma), DBA-Rhodamine (1:100, Vector Laboratories).

    Article Title: VHL-mediated disruption of Sox9 activity compromises β-cell identity and results in diabetes mellitus
    Article Snippet: The following primary antibodies were used: guinea pig anti-insulin (1:300; Millipore), mouse anti-insulin (1:300; Sigma), guinea pig anti-insulin (1:200; Dako North America, Inc.), rabbit anti-glucagon (1:300), guinea pig anti-glucagon (1:300; Millipore), mouse anti-glucagon (1:500; Sigma), rabbit anti-Glut2 (1:500), rabbit anti-Sox9 (1:200; Chemicon), rat anti-somatostatin (1:200; Millipore), mouse anti-Nkx6.1 (1:200; Developmental Studies Hybridoma Bank), rabbit anti-MafA (1:200; Bethyl Laboratories, Inc.), guinea pig anti-Pdx1 (1:200; gift from Mike German, University of California at San Francisco), mouse anti-Pdx1 (1:200; Developmental Studies Hybridoma Bank), rabbit anti-Pdx-1 (1:200; Chemicon), goat anti-Pdx-1 (1:200; R&D Systems), rabbit anti-cleaved caspase-3 (1:200; Cell Signaling), rat anti-HA (1:200; Roche Applied Science), mouse anti-synaptophysin (1:200; Biogenex), goat anti-NeuroD (1:200; Santa Cruz Biotechnology), and mouse anti-β-catenin (1:200; BD Biosciences).

    Sequencing:

    Article Title: p43, a Truncated Form of Thyroid Hormone Receptor α, Regulates Maturation of Pancreatic β Cells
    Article Snippet: The following antibodies were used: guinea pig anti-insulin (1/250; ab7842 Abcam, Cambridge, UK), mouse anti-glucagon (1/100; ab10988 Abcam), rabbit anti-MafA (1/100; IHC-00352 Bethyl Laboratories, Montgomery, TX, USA), mouse anti-PDX1 (1/200; F25A13B Developmental Studies Hybridoma Bank at the University of Iowa (Iowa City, IA, USA)), rabbit anti-PH3 (1/500; 06-570 Millipore, Merck KGaA, Darmstadt, Germany), rabbit anti-HNE (1/100; ab 46545 Abcam).

    Article Title: Pancreas lineage allocation and specification are regulated by sphingosine-1-phosphate signalling
    Article Snippet: Primary antibodies used were rabbit anti-Ngn3 (1:100; Acris), rat anti-E-cadherin (1:400; Zymed), rabbit anti-C-peptide (1:200; Linco), rabbit anti-Amylase (1:300; Sigma), rabbit anti-Ptf1a (1:3,000; Gift from B. Breant), rat anti-Cytokeratin19 (1:250; DSHB), mouse anti-Glucagon (1:500; Sigma), rabbit anti-Pdx1 (1:5,000; Gift from C. Wright), mouse anti-Pdx1 (1:250; DSHB), rabbit anti-Sphk (1:250; Abcam), mouse anti-Nkx6-1 (1:1,000; DSHB), mouse anti-Insulin (1:1,000; Sigma), rabbit anti-PH3 (1:500; Cell Signaling), rabbit anti-Yap1 (1:200; Cell Signaling), rabbit anti-NICD (1:100; Cell Signaling), rat anti-Hes1 (1:500; MBL-Biozol), and rabbit anti-Sel1l (1:250; Abcam).

    Article Title: Reprogramming of Pancreatic Exocrine Cells AR42J Into Insulin-producing Cells Using mRNAs for Pdx1, Ngn3, and MafA Transcription Factors
    Article Snippet: The following primary antibodies were used: rabbit anti-Pdx1 (1:200), rabbit anti-MafA (1:200), rabbit anti-insulin (1:300), mouse anti-C-peptide (1:100), mouse anti-glucagon (1:200) (Abcam, Cambridge, United Kingdom), mouse anti-Neurogenin3 (1:800), mouse anti-Pdx1 (1:400) (Developmental Studies Hybridoma Bank, Iowa City, IA), and rabbit anti-α-amylase (1:200) (Sigma-Aldrich).

    Article Title: The Transcription Factor Myt3 Acts as a Pro-Survival Factor in β-cells
    Article Snippet: Sections were co-stained with rabbit anti-Myt3 (1/250) and guinea pig anti-Insulin (1/1000; Linco), guinea pig anti-Glucagon (1/1000; Linco), guinea pig anti-PP (1/100; Linco), goat anti-Somatostatin (1/1000; Santa Cruz) or mouse anti-Pdx1 (1/500; DSHB).

    Article Title: ALDH1B1 is a potential stem / progenitor marker for multiple pancreas progenitor pools
    Article Snippet: Primary antibodies used were: rabbit anti–ALDH1B1 (1:500) ( Stagos et al., 2010 ) rabbit anti-NGN3 (1:200; gift from H. Edlund), rat anti-E-CADHERIN (1:400; Zymed), rat anti-CYTOKERATIN 19 (anti-CK-19; 1:250; DSHB), mouse anti-INSULIN (1:1,000; Sigma), mouse anti-GLUCAGON (1:500; Sigma), mouse anti-BrdU (1:200 DAKO), mouse anti-PDX1 (1:300, DSHB), rabbit anti-AMYLASE (1:300, Sigma), rabbit anti-SOX9 (1:500; Chemicon), PNA-FITC lectin (1:100, Sigma), DBA-Rhodamine (1:100, Vector Laboratories).

    Article Title: VHL-mediated disruption of Sox9 activity compromises β-cell identity and results in diabetes mellitus
    Article Snippet: The following primary antibodies were used: guinea pig anti-insulin (1:300; Millipore), mouse anti-insulin (1:300; Sigma), guinea pig anti-insulin (1:200; Dako North America, Inc.), rabbit anti-glucagon (1:300), guinea pig anti-glucagon (1:300; Millipore), mouse anti-glucagon (1:500; Sigma), rabbit anti-Glut2 (1:500), rabbit anti-Sox9 (1:200; Chemicon), rat anti-somatostatin (1:200; Millipore), mouse anti-Nkx6.1 (1:200; Developmental Studies Hybridoma Bank), rabbit anti-MafA (1:200; Bethyl Laboratories, Inc.), guinea pig anti-Pdx1 (1:200; gift from Mike German, University of California at San Francisco), mouse anti-Pdx1 (1:200; Developmental Studies Hybridoma Bank), rabbit anti-Pdx-1 (1:200; Chemicon), goat anti-Pdx-1 (1:200; R&D Systems), rabbit anti-cleaved caspase-3 (1:200; Cell Signaling), rat anti-HA (1:200; Roche Applied Science), mouse anti-synaptophysin (1:200; Biogenex), goat anti-NeuroD (1:200; Santa Cruz Biotechnology), and mouse anti-β-catenin (1:200; BD Biosciences).

    Western Blot:

    Article Title: p43, a Truncated Form of Thyroid Hormone Receptor α, Regulates Maturation of Pancreatic β Cells
    Article Snippet: The following antibodies were used: guinea pig anti-insulin (1/250; ab7842 Abcam, Cambridge, UK), mouse anti-glucagon (1/100; ab10988 Abcam), rabbit anti-MafA (1/100; IHC-00352 Bethyl Laboratories, Montgomery, TX, USA), mouse anti-PDX1 (1/200; F25A13B Developmental Studies Hybridoma Bank at the University of Iowa (Iowa City, IA, USA)), rabbit anti-PH3 (1/500; 06-570 Millipore, Merck KGaA, Darmstadt, Germany), rabbit anti-HNE (1/100; ab 46545 Abcam).

    Article Title: Pancreas lineage allocation and specification are regulated by sphingosine-1-phosphate signalling
    Article Snippet: Primary antibodies used were rabbit anti-Ngn3 (1:100; Acris), rat anti-E-cadherin (1:400; Zymed), rabbit anti-C-peptide (1:200; Linco), rabbit anti-Amylase (1:300; Sigma), rabbit anti-Ptf1a (1:3,000; Gift from B. Breant), rat anti-Cytokeratin19 (1:250; DSHB), mouse anti-Glucagon (1:500; Sigma), rabbit anti-Pdx1 (1:5,000; Gift from C. Wright), mouse anti-Pdx1 (1:250; DSHB), rabbit anti-Sphk (1:250; Abcam), mouse anti-Nkx6-1 (1:1,000; DSHB), mouse anti-Insulin (1:1,000; Sigma), rabbit anti-PH3 (1:500; Cell Signaling), rabbit anti-Yap1 (1:200; Cell Signaling), rabbit anti-NICD (1:100; Cell Signaling), rat anti-Hes1 (1:500; MBL-Biozol), and rabbit anti-Sel1l (1:250; Abcam).

    Article Title: Reprogramming of Pancreatic Exocrine Cells AR42J Into Insulin-producing Cells Using mRNAs for Pdx1, Ngn3, and MafA Transcription Factors
    Article Snippet: The following primary antibodies were used: rabbit anti-Pdx1 (1:200), rabbit anti-MafA (1:200), rabbit anti-insulin (1:300), mouse anti-C-peptide (1:100), mouse anti-glucagon (1:200) (Abcam, Cambridge, United Kingdom), mouse anti-Neurogenin3 (1:800), mouse anti-Pdx1 (1:400) (Developmental Studies Hybridoma Bank, Iowa City, IA), and rabbit anti-α-amylase (1:200) (Sigma-Aldrich).

    Article Title: The Transcription Factor Myt3 Acts as a Pro-Survival Factor in β-cells
    Article Snippet: Sections were co-stained with rabbit anti-Myt3 (1/250) and guinea pig anti-Insulin (1/1000; Linco), guinea pig anti-Glucagon (1/1000; Linco), guinea pig anti-PP (1/100; Linco), goat anti-Somatostatin (1/1000; Santa Cruz) or mouse anti-Pdx1 (1/500; DSHB).

    Article Title: ALDH1B1 is a potential stem / progenitor marker for multiple pancreas progenitor pools
    Article Snippet: Primary antibodies used were: rabbit anti–ALDH1B1 (1:500) ( Stagos et al., 2010 ) rabbit anti-NGN3 (1:200; gift from H. Edlund), rat anti-E-CADHERIN (1:400; Zymed), rat anti-CYTOKERATIN 19 (anti-CK-19; 1:250; DSHB), mouse anti-INSULIN (1:1,000; Sigma), mouse anti-GLUCAGON (1:500; Sigma), mouse anti-BrdU (1:200 DAKO), mouse anti-PDX1 (1:300, DSHB), rabbit anti-AMYLASE (1:300, Sigma), rabbit anti-SOX9 (1:500; Chemicon), PNA-FITC lectin (1:100, Sigma), DBA-Rhodamine (1:100, Vector Laboratories).

    Article Title: VHL-mediated disruption of Sox9 activity compromises β-cell identity and results in diabetes mellitus
    Article Snippet: The following primary antibodies were used: guinea pig anti-insulin (1:300; Millipore), mouse anti-insulin (1:300; Sigma), guinea pig anti-insulin (1:200; Dako North America, Inc.), rabbit anti-glucagon (1:300), guinea pig anti-glucagon (1:300; Millipore), mouse anti-glucagon (1:500; Sigma), rabbit anti-Glut2 (1:500), rabbit anti-Sox9 (1:200; Chemicon), rat anti-somatostatin (1:200; Millipore), mouse anti-Nkx6.1 (1:200; Developmental Studies Hybridoma Bank), rabbit anti-MafA (1:200; Bethyl Laboratories, Inc.), guinea pig anti-Pdx1 (1:200; gift from Mike German, University of California at San Francisco), mouse anti-Pdx1 (1:200; Developmental Studies Hybridoma Bank), rabbit anti-Pdx-1 (1:200; Chemicon), goat anti-Pdx-1 (1:200; R&D Systems), rabbit anti-cleaved caspase-3 (1:200; Cell Signaling), rat anti-HA (1:200; Roche Applied Science), mouse anti-synaptophysin (1:200; Biogenex), goat anti-NeuroD (1:200; Santa Cruz Biotechnology), and mouse anti-β-catenin (1:200; BD Biosciences).

    Ex Vivo:

    Article Title: p43, a Truncated Form of Thyroid Hormone Receptor α, Regulates Maturation of Pancreatic β Cells
    Article Snippet: The following antibodies were used: guinea pig anti-insulin (1/250; ab7842 Abcam, Cambridge, UK), mouse anti-glucagon (1/100; ab10988 Abcam), rabbit anti-MafA (1/100; IHC-00352 Bethyl Laboratories, Montgomery, TX, USA), mouse anti-PDX1 (1/200; F25A13B Developmental Studies Hybridoma Bank at the University of Iowa (Iowa City, IA, USA)), rabbit anti-PH3 (1/500; 06-570 Millipore, Merck KGaA, Darmstadt, Germany), rabbit anti-HNE (1/100; ab 46545 Abcam).

    Article Title: Pancreas lineage allocation and specification are regulated by sphingosine-1-phosphate signalling
    Article Snippet: Primary antibodies used were rabbit anti-Ngn3 (1:100; Acris), rat anti-E-cadherin (1:400; Zymed), rabbit anti-C-peptide (1:200; Linco), rabbit anti-Amylase (1:300; Sigma), rabbit anti-Ptf1a (1:3,000; Gift from B. Breant), rat anti-Cytokeratin19 (1:250; DSHB), mouse anti-Glucagon (1:500; Sigma), rabbit anti-Pdx1 (1:5,000; Gift from C. Wright), mouse anti-Pdx1 (1:250; DSHB), rabbit anti-Sphk (1:250; Abcam), mouse anti-Nkx6-1 (1:1,000; DSHB), mouse anti-Insulin (1:1,000; Sigma), rabbit anti-PH3 (1:500; Cell Signaling), rabbit anti-Yap1 (1:200; Cell Signaling), rabbit anti-NICD (1:100; Cell Signaling), rat anti-Hes1 (1:500; MBL-Biozol), and rabbit anti-Sel1l (1:250; Abcam).

    Article Title: Reprogramming of Pancreatic Exocrine Cells AR42J Into Insulin-producing Cells Using mRNAs for Pdx1, Ngn3, and MafA Transcription Factors
    Article Snippet: The following primary antibodies were used: rabbit anti-Pdx1 (1:200), rabbit anti-MafA (1:200), rabbit anti-insulin (1:300), mouse anti-C-peptide (1:100), mouse anti-glucagon (1:200) (Abcam, Cambridge, United Kingdom), mouse anti-Neurogenin3 (1:800), mouse anti-Pdx1 (1:400) (Developmental Studies Hybridoma Bank, Iowa City, IA), and rabbit anti-α-amylase (1:200) (Sigma-Aldrich).

    Article Title: The Transcription Factor Myt3 Acts as a Pro-Survival Factor in β-cells
    Article Snippet: Sections were co-stained with rabbit anti-Myt3 (1/250) and guinea pig anti-Insulin (1/1000; Linco), guinea pig anti-Glucagon (1/1000; Linco), guinea pig anti-PP (1/100; Linco), goat anti-Somatostatin (1/1000; Santa Cruz) or mouse anti-Pdx1 (1/500; DSHB).

    Article Title: ALDH1B1 is a potential stem / progenitor marker for multiple pancreas progenitor pools
    Article Snippet: Primary antibodies used were: rabbit anti–ALDH1B1 (1:500) ( Stagos et al., 2010 ) rabbit anti-NGN3 (1:200; gift from H. Edlund), rat anti-E-CADHERIN (1:400; Zymed), rat anti-CYTOKERATIN 19 (anti-CK-19; 1:250; DSHB), mouse anti-INSULIN (1:1,000; Sigma), mouse anti-GLUCAGON (1:500; Sigma), mouse anti-BrdU (1:200 DAKO), mouse anti-PDX1 (1:300, DSHB), rabbit anti-AMYLASE (1:300, Sigma), rabbit anti-SOX9 (1:500; Chemicon), PNA-FITC lectin (1:100, Sigma), DBA-Rhodamine (1:100, Vector Laboratories).

    Article Title: VHL-mediated disruption of Sox9 activity compromises β-cell identity and results in diabetes mellitus
    Article Snippet: The following primary antibodies were used: guinea pig anti-insulin (1:300; Millipore), mouse anti-insulin (1:300; Sigma), guinea pig anti-insulin (1:200; Dako North America, Inc.), rabbit anti-glucagon (1:300), guinea pig anti-glucagon (1:300; Millipore), mouse anti-glucagon (1:500; Sigma), rabbit anti-Glut2 (1:500), rabbit anti-Sox9 (1:200; Chemicon), rat anti-somatostatin (1:200; Millipore), mouse anti-Nkx6.1 (1:200; Developmental Studies Hybridoma Bank), rabbit anti-MafA (1:200; Bethyl Laboratories, Inc.), guinea pig anti-Pdx1 (1:200; gift from Mike German, University of California at San Francisco), mouse anti-Pdx1 (1:200; Developmental Studies Hybridoma Bank), rabbit anti-Pdx-1 (1:200; Chemicon), goat anti-Pdx-1 (1:200; R&D Systems), rabbit anti-cleaved caspase-3 (1:200; Cell Signaling), rat anti-HA (1:200; Roche Applied Science), mouse anti-synaptophysin (1:200; Biogenex), goat anti-NeuroD (1:200; Santa Cruz Biotechnology), and mouse anti-β-catenin (1:200; BD Biosciences).

    Enzyme-linked Immunosorbent Assay:

    Article Title: p43, a Truncated Form of Thyroid Hormone Receptor α, Regulates Maturation of Pancreatic β Cells
    Article Snippet: The following antibodies were used: guinea pig anti-insulin (1/250; ab7842 Abcam, Cambridge, UK), mouse anti-glucagon (1/100; ab10988 Abcam), rabbit anti-MafA (1/100; IHC-00352 Bethyl Laboratories, Montgomery, TX, USA), mouse anti-PDX1 (1/200; F25A13B Developmental Studies Hybridoma Bank at the University of Iowa (Iowa City, IA, USA)), rabbit anti-PH3 (1/500; 06-570 Millipore, Merck KGaA, Darmstadt, Germany), rabbit anti-HNE (1/100; ab 46545 Abcam).

    Article Title: Pancreas lineage allocation and specification are regulated by sphingosine-1-phosphate signalling
    Article Snippet: Primary antibodies used were rabbit anti-Ngn3 (1:100; Acris), rat anti-E-cadherin (1:400; Zymed), rabbit anti-C-peptide (1:200; Linco), rabbit anti-Amylase (1:300; Sigma), rabbit anti-Ptf1a (1:3,000; Gift from B. Breant), rat anti-Cytokeratin19 (1:250; DSHB), mouse anti-Glucagon (1:500; Sigma), rabbit anti-Pdx1 (1:5,000; Gift from C. Wright), mouse anti-Pdx1 (1:250; DSHB), rabbit anti-Sphk (1:250; Abcam), mouse anti-Nkx6-1 (1:1,000; DSHB), mouse anti-Insulin (1:1,000; Sigma), rabbit anti-PH3 (1:500; Cell Signaling), rabbit anti-Yap1 (1:200; Cell Signaling), rabbit anti-NICD (1:100; Cell Signaling), rat anti-Hes1 (1:500; MBL-Biozol), and rabbit anti-Sel1l (1:250; Abcam).

    Article Title: Reprogramming of Pancreatic Exocrine Cells AR42J Into Insulin-producing Cells Using mRNAs for Pdx1, Ngn3, and MafA Transcription Factors
    Article Snippet: The following primary antibodies were used: rabbit anti-Pdx1 (1:200), rabbit anti-MafA (1:200), rabbit anti-insulin (1:300), mouse anti-C-peptide (1:100), mouse anti-glucagon (1:200) (Abcam, Cambridge, United Kingdom), mouse anti-Neurogenin3 (1:800), mouse anti-Pdx1 (1:400) (Developmental Studies Hybridoma Bank, Iowa City, IA), and rabbit anti-α-amylase (1:200) (Sigma-Aldrich).

    Article Title: The Transcription Factor Myt3 Acts as a Pro-Survival Factor in β-cells
    Article Snippet: Sections were co-stained with rabbit anti-Myt3 (1/250) and guinea pig anti-Insulin (1/1000; Linco), guinea pig anti-Glucagon (1/1000; Linco), guinea pig anti-PP (1/100; Linco), goat anti-Somatostatin (1/1000; Santa Cruz) or mouse anti-Pdx1 (1/500; DSHB).

    Article Title: ALDH1B1 is a potential stem / progenitor marker for multiple pancreas progenitor pools
    Article Snippet: Primary antibodies used were: rabbit anti–ALDH1B1 (1:500) ( Stagos et al., 2010 ) rabbit anti-NGN3 (1:200; gift from H. Edlund), rat anti-E-CADHERIN (1:400; Zymed), rat anti-CYTOKERATIN 19 (anti-CK-19; 1:250; DSHB), mouse anti-INSULIN (1:1,000; Sigma), mouse anti-GLUCAGON (1:500; Sigma), mouse anti-BrdU (1:200 DAKO), mouse anti-PDX1 (1:300, DSHB), rabbit anti-AMYLASE (1:300, Sigma), rabbit anti-SOX9 (1:500; Chemicon), PNA-FITC lectin (1:100, Sigma), DBA-Rhodamine (1:100, Vector Laboratories).

    Article Title: VHL-mediated disruption of Sox9 activity compromises β-cell identity and results in diabetes mellitus
    Article Snippet: The following primary antibodies were used: guinea pig anti-insulin (1:300; Millipore), mouse anti-insulin (1:300; Sigma), guinea pig anti-insulin (1:200; Dako North America, Inc.), rabbit anti-glucagon (1:300), guinea pig anti-glucagon (1:300; Millipore), mouse anti-glucagon (1:500; Sigma), rabbit anti-Glut2 (1:500), rabbit anti-Sox9 (1:200; Chemicon), rat anti-somatostatin (1:200; Millipore), mouse anti-Nkx6.1 (1:200; Developmental Studies Hybridoma Bank), rabbit anti-MafA (1:200; Bethyl Laboratories, Inc.), guinea pig anti-Pdx1 (1:200; gift from Mike German, University of California at San Francisco), mouse anti-Pdx1 (1:200; Developmental Studies Hybridoma Bank), rabbit anti-Pdx-1 (1:200; Chemicon), goat anti-Pdx-1 (1:200; R&D Systems), rabbit anti-cleaved caspase-3 (1:200; Cell Signaling), rat anti-HA (1:200; Roche Applied Science), mouse anti-synaptophysin (1:200; Biogenex), goat anti-NeuroD (1:200; Santa Cruz Biotechnology), and mouse anti-β-catenin (1:200; BD Biosciences).

    Cell Function Assay:

    Article Title: p43, a Truncated Form of Thyroid Hormone Receptor α, Regulates Maturation of Pancreatic β Cells
    Article Snippet: The following antibodies were used: guinea pig anti-insulin (1/250; ab7842 Abcam, Cambridge, UK), mouse anti-glucagon (1/100; ab10988 Abcam), rabbit anti-MafA (1/100; IHC-00352 Bethyl Laboratories, Montgomery, TX, USA), mouse anti-PDX1 (1/200; F25A13B Developmental Studies Hybridoma Bank at the University of Iowa (Iowa City, IA, USA)), rabbit anti-PH3 (1/500; 06-570 Millipore, Merck KGaA, Darmstadt, Germany), rabbit anti-HNE (1/100; ab 46545 Abcam).

    Article Title: Pancreas lineage allocation and specification are regulated by sphingosine-1-phosphate signalling
    Article Snippet: Primary antibodies used were rabbit anti-Ngn3 (1:100; Acris), rat anti-E-cadherin (1:400; Zymed), rabbit anti-C-peptide (1:200; Linco), rabbit anti-Amylase (1:300; Sigma), rabbit anti-Ptf1a (1:3,000; Gift from B. Breant), rat anti-Cytokeratin19 (1:250; DSHB), mouse anti-Glucagon (1:500; Sigma), rabbit anti-Pdx1 (1:5,000; Gift from C. Wright), mouse anti-Pdx1 (1:250; DSHB), rabbit anti-Sphk (1:250; Abcam), mouse anti-Nkx6-1 (1:1,000; DSHB), mouse anti-Insulin (1:1,000; Sigma), rabbit anti-PH3 (1:500; Cell Signaling), rabbit anti-Yap1 (1:200; Cell Signaling), rabbit anti-NICD (1:100; Cell Signaling), rat anti-Hes1 (1:500; MBL-Biozol), and rabbit anti-Sel1l (1:250; Abcam).

    Article Title: Reprogramming of Pancreatic Exocrine Cells AR42J Into Insulin-producing Cells Using mRNAs for Pdx1, Ngn3, and MafA Transcription Factors
    Article Snippet: The following primary antibodies were used: rabbit anti-Pdx1 (1:200), rabbit anti-MafA (1:200), rabbit anti-insulin (1:300), mouse anti-C-peptide (1:100), mouse anti-glucagon (1:200) (Abcam, Cambridge, United Kingdom), mouse anti-Neurogenin3 (1:800), mouse anti-Pdx1 (1:400) (Developmental Studies Hybridoma Bank, Iowa City, IA), and rabbit anti-α-amylase (1:200) (Sigma-Aldrich).

    Article Title: The Transcription Factor Myt3 Acts as a Pro-Survival Factor in β-cells
    Article Snippet: Sections were co-stained with rabbit anti-Myt3 (1/250) and guinea pig anti-Insulin (1/1000; Linco), guinea pig anti-Glucagon (1/1000; Linco), guinea pig anti-PP (1/100; Linco), goat anti-Somatostatin (1/1000; Santa Cruz) or mouse anti-Pdx1 (1/500; DSHB).

    Article Title: ALDH1B1 is a potential stem / progenitor marker for multiple pancreas progenitor pools
    Article Snippet: Primary antibodies used were: rabbit anti–ALDH1B1 (1:500) ( Stagos et al., 2010 ) rabbit anti-NGN3 (1:200; gift from H. Edlund), rat anti-E-CADHERIN (1:400; Zymed), rat anti-CYTOKERATIN 19 (anti-CK-19; 1:250; DSHB), mouse anti-INSULIN (1:1,000; Sigma), mouse anti-GLUCAGON (1:500; Sigma), mouse anti-BrdU (1:200 DAKO), mouse anti-PDX1 (1:300, DSHB), rabbit anti-AMYLASE (1:300, Sigma), rabbit anti-SOX9 (1:500; Chemicon), PNA-FITC lectin (1:100, Sigma), DBA-Rhodamine (1:100, Vector Laboratories).

    Article Title: VHL-mediated disruption of Sox9 activity compromises β-cell identity and results in diabetes mellitus
    Article Snippet: The following primary antibodies were used: guinea pig anti-insulin (1:300; Millipore), mouse anti-insulin (1:300; Sigma), guinea pig anti-insulin (1:200; Dako North America, Inc.), rabbit anti-glucagon (1:300), guinea pig anti-glucagon (1:300; Millipore), mouse anti-glucagon (1:500; Sigma), rabbit anti-Glut2 (1:500), rabbit anti-Sox9 (1:200; Chemicon), rat anti-somatostatin (1:200; Millipore), mouse anti-Nkx6.1 (1:200; Developmental Studies Hybridoma Bank), rabbit anti-MafA (1:200; Bethyl Laboratories, Inc.), guinea pig anti-Pdx1 (1:200; gift from Mike German, University of California at San Francisco), mouse anti-Pdx1 (1:200; Developmental Studies Hybridoma Bank), rabbit anti-Pdx-1 (1:200; Chemicon), goat anti-Pdx-1 (1:200; R&D Systems), rabbit anti-cleaved caspase-3 (1:200; Cell Signaling), rat anti-HA (1:200; Roche Applied Science), mouse anti-synaptophysin (1:200; Biogenex), goat anti-NeuroD (1:200; Santa Cruz Biotechnology), and mouse anti-β-catenin (1:200; BD Biosciences).

    Immunofluorescence:

    Article Title: p43, a Truncated Form of Thyroid Hormone Receptor α, Regulates Maturation of Pancreatic β Cells
    Article Snippet: The following antibodies were used: guinea pig anti-insulin (1/250; ab7842 Abcam, Cambridge, UK), mouse anti-glucagon (1/100; ab10988 Abcam), rabbit anti-MafA (1/100; IHC-00352 Bethyl Laboratories, Montgomery, TX, USA), mouse anti-PDX1 (1/200; F25A13B Developmental Studies Hybridoma Bank at the University of Iowa (Iowa City, IA, USA)), rabbit anti-PH3 (1/500; 06-570 Millipore, Merck KGaA, Darmstadt, Germany), rabbit anti-HNE (1/100; ab 46545 Abcam).

    Article Title: Pancreas lineage allocation and specification are regulated by sphingosine-1-phosphate signalling
    Article Snippet: Primary antibodies used were rabbit anti-Ngn3 (1:100; Acris), rat anti-E-cadherin (1:400; Zymed), rabbit anti-C-peptide (1:200; Linco), rabbit anti-Amylase (1:300; Sigma), rabbit anti-Ptf1a (1:3,000; Gift from B. Breant), rat anti-Cytokeratin19 (1:250; DSHB), mouse anti-Glucagon (1:500; Sigma), rabbit anti-Pdx1 (1:5,000; Gift from C. Wright), mouse anti-Pdx1 (1:250; DSHB), rabbit anti-Sphk (1:250; Abcam), mouse anti-Nkx6-1 (1:1,000; DSHB), mouse anti-Insulin (1:1,000; Sigma), rabbit anti-PH3 (1:500; Cell Signaling), rabbit anti-Yap1 (1:200; Cell Signaling), rabbit anti-NICD (1:100; Cell Signaling), rat anti-Hes1 (1:500; MBL-Biozol), and rabbit anti-Sel1l (1:250; Abcam).

    Article Title: Reprogramming of Pancreatic Exocrine Cells AR42J Into Insulin-producing Cells Using mRNAs for Pdx1, Ngn3, and MafA Transcription Factors
    Article Snippet: The following primary antibodies were used: rabbit anti-Pdx1 (1:200), rabbit anti-MafA (1:200), rabbit anti-insulin (1:300), mouse anti-C-peptide (1:100), mouse anti-glucagon (1:200) (Abcam, Cambridge, United Kingdom), mouse anti-Neurogenin3 (1:800), mouse anti-Pdx1 (1:400) (Developmental Studies Hybridoma Bank, Iowa City, IA), and rabbit anti-α-amylase (1:200) (Sigma-Aldrich).

    Article Title: The Transcription Factor Myt3 Acts as a Pro-Survival Factor in β-cells
    Article Snippet: Sections were co-stained with rabbit anti-Myt3 (1/250) and guinea pig anti-Insulin (1/1000; Linco), guinea pig anti-Glucagon (1/1000; Linco), guinea pig anti-PP (1/100; Linco), goat anti-Somatostatin (1/1000; Santa Cruz) or mouse anti-Pdx1 (1/500; DSHB).

    Article Title: ALDH1B1 is a potential stem / progenitor marker for multiple pancreas progenitor pools
    Article Snippet: Primary antibodies used were: rabbit anti–ALDH1B1 (1:500) ( Stagos et al., 2010 ) rabbit anti-NGN3 (1:200; gift from H. Edlund), rat anti-E-CADHERIN (1:400; Zymed), rat anti-CYTOKERATIN 19 (anti-CK-19; 1:250; DSHB), mouse anti-INSULIN (1:1,000; Sigma), mouse anti-GLUCAGON (1:500; Sigma), mouse anti-BrdU (1:200 DAKO), mouse anti-PDX1 (1:300, DSHB), rabbit anti-AMYLASE (1:300, Sigma), rabbit anti-SOX9 (1:500; Chemicon), PNA-FITC lectin (1:100, Sigma), DBA-Rhodamine (1:100, Vector Laboratories).

    Article Title: VHL-mediated disruption of Sox9 activity compromises β-cell identity and results in diabetes mellitus
    Article Snippet: The following primary antibodies were used: guinea pig anti-insulin (1:300; Millipore), mouse anti-insulin (1:300; Sigma), guinea pig anti-insulin (1:200; Dako North America, Inc.), rabbit anti-glucagon (1:300), guinea pig anti-glucagon (1:300; Millipore), mouse anti-glucagon (1:500; Sigma), rabbit anti-Glut2 (1:500), rabbit anti-Sox9 (1:200; Chemicon), rat anti-somatostatin (1:200; Millipore), mouse anti-Nkx6.1 (1:200; Developmental Studies Hybridoma Bank), rabbit anti-MafA (1:200; Bethyl Laboratories, Inc.), guinea pig anti-Pdx1 (1:200; gift from Mike German, University of California at San Francisco), mouse anti-Pdx1 (1:200; Developmental Studies Hybridoma Bank), rabbit anti-Pdx-1 (1:200; Chemicon), goat anti-Pdx-1 (1:200; R&D Systems), rabbit anti-cleaved caspase-3 (1:200; Cell Signaling), rat anti-HA (1:200; Roche Applied Science), mouse anti-synaptophysin (1:200; Biogenex), goat anti-NeuroD (1:200; Santa Cruz Biotechnology), and mouse anti-β-catenin (1:200; BD Biosciences).

    Quantitation Assay:

    Article Title: p43, a Truncated Form of Thyroid Hormone Receptor α, Regulates Maturation of Pancreatic β Cells
    Article Snippet: The following antibodies were used: guinea pig anti-insulin (1/250; ab7842 Abcam, Cambridge, UK), mouse anti-glucagon (1/100; ab10988 Abcam), rabbit anti-MafA (1/100; IHC-00352 Bethyl Laboratories, Montgomery, TX, USA), mouse anti-PDX1 (1/200; F25A13B Developmental Studies Hybridoma Bank at the University of Iowa (Iowa City, IA, USA)), rabbit anti-PH3 (1/500; 06-570 Millipore, Merck KGaA, Darmstadt, Germany), rabbit anti-HNE (1/100; ab 46545 Abcam).

    Article Title: Pancreas lineage allocation and specification are regulated by sphingosine-1-phosphate signalling
    Article Snippet: Primary antibodies used were rabbit anti-Ngn3 (1:100; Acris), rat anti-E-cadherin (1:400; Zymed), rabbit anti-C-peptide (1:200; Linco), rabbit anti-Amylase (1:300; Sigma), rabbit anti-Ptf1a (1:3,000; Gift from B. Breant), rat anti-Cytokeratin19 (1:250; DSHB), mouse anti-Glucagon (1:500; Sigma), rabbit anti-Pdx1 (1:5,000; Gift from C. Wright), mouse anti-Pdx1 (1:250; DSHB), rabbit anti-Sphk (1:250; Abcam), mouse anti-Nkx6-1 (1:1,000; DSHB), mouse anti-Insulin (1:1,000; Sigma), rabbit anti-PH3 (1:500; Cell Signaling), rabbit anti-Yap1 (1:200; Cell Signaling), rabbit anti-NICD (1:100; Cell Signaling), rat anti-Hes1 (1:500; MBL-Biozol), and rabbit anti-Sel1l (1:250; Abcam).

    Article Title: Reprogramming of Pancreatic Exocrine Cells AR42J Into Insulin-producing Cells Using mRNAs for Pdx1, Ngn3, and MafA Transcription Factors
    Article Snippet: The following primary antibodies were used: rabbit anti-Pdx1 (1:200), rabbit anti-MafA (1:200), rabbit anti-insulin (1:300), mouse anti-C-peptide (1:100), mouse anti-glucagon (1:200) (Abcam, Cambridge, United Kingdom), mouse anti-Neurogenin3 (1:800), mouse anti-Pdx1 (1:400) (Developmental Studies Hybridoma Bank, Iowa City, IA), and rabbit anti-α-amylase (1:200) (Sigma-Aldrich).

    Article Title: The Transcription Factor Myt3 Acts as a Pro-Survival Factor in β-cells
    Article Snippet: Sections were co-stained with rabbit anti-Myt3 (1/250) and guinea pig anti-Insulin (1/1000; Linco), guinea pig anti-Glucagon (1/1000; Linco), guinea pig anti-PP (1/100; Linco), goat anti-Somatostatin (1/1000; Santa Cruz) or mouse anti-Pdx1 (1/500; DSHB).

    Article Title: ALDH1B1 is a potential stem / progenitor marker for multiple pancreas progenitor pools
    Article Snippet: Primary antibodies used were: rabbit anti–ALDH1B1 (1:500) ( Stagos et al., 2010 ) rabbit anti-NGN3 (1:200; gift from H. Edlund), rat anti-E-CADHERIN (1:400; Zymed), rat anti-CYTOKERATIN 19 (anti-CK-19; 1:250; DSHB), mouse anti-INSULIN (1:1,000; Sigma), mouse anti-GLUCAGON (1:500; Sigma), mouse anti-BrdU (1:200 DAKO), mouse anti-PDX1 (1:300, DSHB), rabbit anti-AMYLASE (1:300, Sigma), rabbit anti-SOX9 (1:500; Chemicon), PNA-FITC lectin (1:100, Sigma), DBA-Rhodamine (1:100, Vector Laboratories).

    Article Title: VHL-mediated disruption of Sox9 activity compromises β-cell identity and results in diabetes mellitus
    Article Snippet: The following primary antibodies were used: guinea pig anti-insulin (1:300; Millipore), mouse anti-insulin (1:300; Sigma), guinea pig anti-insulin (1:200; Dako North America, Inc.), rabbit anti-glucagon (1:300), guinea pig anti-glucagon (1:300; Millipore), mouse anti-glucagon (1:500; Sigma), rabbit anti-Glut2 (1:500), rabbit anti-Sox9 (1:200; Chemicon), rat anti-somatostatin (1:200; Millipore), mouse anti-Nkx6.1 (1:200; Developmental Studies Hybridoma Bank), rabbit anti-MafA (1:200; Bethyl Laboratories, Inc.), guinea pig anti-Pdx1 (1:200; gift from Mike German, University of California at San Francisco), mouse anti-Pdx1 (1:200; Developmental Studies Hybridoma Bank), rabbit anti-Pdx-1 (1:200; Chemicon), goat anti-Pdx-1 (1:200; R&D Systems), rabbit anti-cleaved caspase-3 (1:200; Cell Signaling), rat anti-HA (1:200; Roche Applied Science), mouse anti-synaptophysin (1:200; Biogenex), goat anti-NeuroD (1:200; Santa Cruz Biotechnology), and mouse anti-β-catenin (1:200; BD Biosciences).

    Cell Culture:

    Article Title: p43, a Truncated Form of Thyroid Hormone Receptor α, Regulates Maturation of Pancreatic β Cells
    Article Snippet: The following antibodies were used: guinea pig anti-insulin (1/250; ab7842 Abcam, Cambridge, UK), mouse anti-glucagon (1/100; ab10988 Abcam), rabbit anti-MafA (1/100; IHC-00352 Bethyl Laboratories, Montgomery, TX, USA), mouse anti-PDX1 (1/200; F25A13B Developmental Studies Hybridoma Bank at the University of Iowa (Iowa City, IA, USA)), rabbit anti-PH3 (1/500; 06-570 Millipore, Merck KGaA, Darmstadt, Germany), rabbit anti-HNE (1/100; ab 46545 Abcam).

    Article Title: Pancreas lineage allocation and specification are regulated by sphingosine-1-phosphate signalling
    Article Snippet: Primary antibodies used were rabbit anti-Ngn3 (1:100; Acris), rat anti-E-cadherin (1:400; Zymed), rabbit anti-C-peptide (1:200; Linco), rabbit anti-Amylase (1:300; Sigma), rabbit anti-Ptf1a (1:3,000; Gift from B. Breant), rat anti-Cytokeratin19 (1:250; DSHB), mouse anti-Glucagon (1:500; Sigma), rabbit anti-Pdx1 (1:5,000; Gift from C. Wright), mouse anti-Pdx1 (1:250; DSHB), rabbit anti-Sphk (1:250; Abcam), mouse anti-Nkx6-1 (1:1,000; DSHB), mouse anti-Insulin (1:1,000; Sigma), rabbit anti-PH3 (1:500; Cell Signaling), rabbit anti-Yap1 (1:200; Cell Signaling), rabbit anti-NICD (1:100; Cell Signaling), rat anti-Hes1 (1:500; MBL-Biozol), and rabbit anti-Sel1l (1:250; Abcam).

    Article Title: Reprogramming of Pancreatic Exocrine Cells AR42J Into Insulin-producing Cells Using mRNAs for Pdx1, Ngn3, and MafA Transcription Factors
    Article Snippet: The following primary antibodies were used: rabbit anti-Pdx1 (1:200), rabbit anti-MafA (1:200), rabbit anti-insulin (1:300), mouse anti-C-peptide (1:100), mouse anti-glucagon (1:200) (Abcam, Cambridge, United Kingdom), mouse anti-Neurogenin3 (1:800), mouse anti-Pdx1 (1:400) (Developmental Studies Hybridoma Bank, Iowa City, IA), and rabbit anti-α-amylase (1:200) (Sigma-Aldrich).

    Article Title: The Transcription Factor Myt3 Acts as a Pro-Survival Factor in β-cells
    Article Snippet: Sections were co-stained with rabbit anti-Myt3 (1/250) and guinea pig anti-Insulin (1/1000; Linco), guinea pig anti-Glucagon (1/1000; Linco), guinea pig anti-PP (1/100; Linco), goat anti-Somatostatin (1/1000; Santa Cruz) or mouse anti-Pdx1 (1/500; DSHB).

    Article Title: ALDH1B1 is a potential stem / progenitor marker for multiple pancreas progenitor pools
    Article Snippet: Primary antibodies used were: rabbit anti–ALDH1B1 (1:500) ( Stagos et al., 2010 ) rabbit anti-NGN3 (1:200; gift from H. Edlund), rat anti-E-CADHERIN (1:400; Zymed), rat anti-CYTOKERATIN 19 (anti-CK-19; 1:250; DSHB), mouse anti-INSULIN (1:1,000; Sigma), mouse anti-GLUCAGON (1:500; Sigma), mouse anti-BrdU (1:200 DAKO), mouse anti-PDX1 (1:300, DSHB), rabbit anti-AMYLASE (1:300, Sigma), rabbit anti-SOX9 (1:500; Chemicon), PNA-FITC lectin (1:100, Sigma), DBA-Rhodamine (1:100, Vector Laboratories).

    Article Title: VHL-mediated disruption of Sox9 activity compromises β-cell identity and results in diabetes mellitus
    Article Snippet: The following primary antibodies were used: guinea pig anti-insulin (1:300; Millipore), mouse anti-insulin (1:300; Sigma), guinea pig anti-insulin (1:200; Dako North America, Inc.), rabbit anti-glucagon (1:300), guinea pig anti-glucagon (1:300; Millipore), mouse anti-glucagon (1:500; Sigma), rabbit anti-Glut2 (1:500), rabbit anti-Sox9 (1:200; Chemicon), rat anti-somatostatin (1:200; Millipore), mouse anti-Nkx6.1 (1:200; Developmental Studies Hybridoma Bank), rabbit anti-MafA (1:200; Bethyl Laboratories, Inc.), guinea pig anti-Pdx1 (1:200; gift from Mike German, University of California at San Francisco), mouse anti-Pdx1 (1:200; Developmental Studies Hybridoma Bank), rabbit anti-Pdx-1 (1:200; Chemicon), goat anti-Pdx-1 (1:200; R&D Systems), rabbit anti-cleaved caspase-3 (1:200; Cell Signaling), rat anti-HA (1:200; Roche Applied Science), mouse anti-synaptophysin (1:200; Biogenex), goat anti-NeuroD (1:200; Santa Cruz Biotechnology), and mouse anti-β-catenin (1:200; BD Biosciences).

    Blocking Assay:

    Article Title: p43, a Truncated Form of Thyroid Hormone Receptor α, Regulates Maturation of Pancreatic β Cells
    Article Snippet: The following antibodies were used: guinea pig anti-insulin (1/250; ab7842 Abcam, Cambridge, UK), mouse anti-glucagon (1/100; ab10988 Abcam), rabbit anti-MafA (1/100; IHC-00352 Bethyl Laboratories, Montgomery, TX, USA), mouse anti-PDX1 (1/200; F25A13B Developmental Studies Hybridoma Bank at the University of Iowa (Iowa City, IA, USA)), rabbit anti-PH3 (1/500; 06-570 Millipore, Merck KGaA, Darmstadt, Germany), rabbit anti-HNE (1/100; ab 46545 Abcam).

    Article Title: Pancreas lineage allocation and specification are regulated by sphingosine-1-phosphate signalling
    Article Snippet: Primary antibodies used were rabbit anti-Ngn3 (1:100; Acris), rat anti-E-cadherin (1:400; Zymed), rabbit anti-C-peptide (1:200; Linco), rabbit anti-Amylase (1:300; Sigma), rabbit anti-Ptf1a (1:3,000; Gift from B. Breant), rat anti-Cytokeratin19 (1:250; DSHB), mouse anti-Glucagon (1:500; Sigma), rabbit anti-Pdx1 (1:5,000; Gift from C. Wright), mouse anti-Pdx1 (1:250; DSHB), rabbit anti-Sphk (1:250; Abcam), mouse anti-Nkx6-1 (1:1,000; DSHB), mouse anti-Insulin (1:1,000; Sigma), rabbit anti-PH3 (1:500; Cell Signaling), rabbit anti-Yap1 (1:200; Cell Signaling), rabbit anti-NICD (1:100; Cell Signaling), rat anti-Hes1 (1:500; MBL-Biozol), and rabbit anti-Sel1l (1:250; Abcam).

    Article Title: Reprogramming of Pancreatic Exocrine Cells AR42J Into Insulin-producing Cells Using mRNAs for Pdx1, Ngn3, and MafA Transcription Factors
    Article Snippet: The following primary antibodies were used: rabbit anti-Pdx1 (1:200), rabbit anti-MafA (1:200), rabbit anti-insulin (1:300), mouse anti-C-peptide (1:100), mouse anti-glucagon (1:200) (Abcam, Cambridge, United Kingdom), mouse anti-Neurogenin3 (1:800), mouse anti-Pdx1 (1:400) (Developmental Studies Hybridoma Bank, Iowa City, IA), and rabbit anti-α-amylase (1:200) (Sigma-Aldrich).

    Article Title: The Transcription Factor Myt3 Acts as a Pro-Survival Factor in β-cells
    Article Snippet: Sections were co-stained with rabbit anti-Myt3 (1/250) and guinea pig anti-Insulin (1/1000; Linco), guinea pig anti-Glucagon (1/1000; Linco), guinea pig anti-PP (1/100; Linco), goat anti-Somatostatin (1/1000; Santa Cruz) or mouse anti-Pdx1 (1/500; DSHB).

    Article Title: ALDH1B1 is a potential stem / progenitor marker for multiple pancreas progenitor pools
    Article Snippet: Primary antibodies used were: rabbit anti–ALDH1B1 (1:500) ( Stagos et al., 2010 ) rabbit anti-NGN3 (1:200; gift from H. Edlund), rat anti-E-CADHERIN (1:400; Zymed), rat anti-CYTOKERATIN 19 (anti-CK-19; 1:250; DSHB), mouse anti-INSULIN (1:1,000; Sigma), mouse anti-GLUCAGON (1:500; Sigma), mouse anti-BrdU (1:200 DAKO), mouse anti-PDX1 (1:300, DSHB), rabbit anti-AMYLASE (1:300, Sigma), rabbit anti-SOX9 (1:500; Chemicon), PNA-FITC lectin (1:100, Sigma), DBA-Rhodamine (1:100, Vector Laboratories).

    Article Title: VHL-mediated disruption of Sox9 activity compromises β-cell identity and results in diabetes mellitus
    Article Snippet: The following primary antibodies were used: guinea pig anti-insulin (1:300; Millipore), mouse anti-insulin (1:300; Sigma), guinea pig anti-insulin (1:200; Dako North America, Inc.), rabbit anti-glucagon (1:300), guinea pig anti-glucagon (1:300; Millipore), mouse anti-glucagon (1:500; Sigma), rabbit anti-Glut2 (1:500), rabbit anti-Sox9 (1:200; Chemicon), rat anti-somatostatin (1:200; Millipore), mouse anti-Nkx6.1 (1:200; Developmental Studies Hybridoma Bank), rabbit anti-MafA (1:200; Bethyl Laboratories, Inc.), guinea pig anti-Pdx1 (1:200; gift from Mike German, University of California at San Francisco), mouse anti-Pdx1 (1:200; Developmental Studies Hybridoma Bank), rabbit anti-Pdx-1 (1:200; Chemicon), goat anti-Pdx-1 (1:200; R&D Systems), rabbit anti-cleaved caspase-3 (1:200; Cell Signaling), rat anti-HA (1:200; Roche Applied Science), mouse anti-synaptophysin (1:200; Biogenex), goat anti-NeuroD (1:200; Santa Cruz Biotechnology), and mouse anti-β-catenin (1:200; BD Biosciences).

    RNA Sequencing Assay:

    Article Title: p43, a Truncated Form of Thyroid Hormone Receptor α, Regulates Maturation of Pancreatic β Cells
    Article Snippet: The following antibodies were used: guinea pig anti-insulin (1/250; ab7842 Abcam, Cambridge, UK), mouse anti-glucagon (1/100; ab10988 Abcam), rabbit anti-MafA (1/100; IHC-00352 Bethyl Laboratories, Montgomery, TX, USA), mouse anti-PDX1 (1/200; F25A13B Developmental Studies Hybridoma Bank at the University of Iowa (Iowa City, IA, USA)), rabbit anti-PH3 (1/500; 06-570 Millipore, Merck KGaA, Darmstadt, Germany), rabbit anti-HNE (1/100; ab 46545 Abcam).

    Article Title: Pancreas lineage allocation and specification are regulated by sphingosine-1-phosphate signalling
    Article Snippet: Primary antibodies used were rabbit anti-Ngn3 (1:100; Acris), rat anti-E-cadherin (1:400; Zymed), rabbit anti-C-peptide (1:200; Linco), rabbit anti-Amylase (1:300; Sigma), rabbit anti-Ptf1a (1:3,000; Gift from B. Breant), rat anti-Cytokeratin19 (1:250; DSHB), mouse anti-Glucagon (1:500; Sigma), rabbit anti-Pdx1 (1:5,000; Gift from C. Wright), mouse anti-Pdx1 (1:250; DSHB), rabbit anti-Sphk (1:250; Abcam), mouse anti-Nkx6-1 (1:1,000; DSHB), mouse anti-Insulin (1:1,000; Sigma), rabbit anti-PH3 (1:500; Cell Signaling), rabbit anti-Yap1 (1:200; Cell Signaling), rabbit anti-NICD (1:100; Cell Signaling), rat anti-Hes1 (1:500; MBL-Biozol), and rabbit anti-Sel1l (1:250; Abcam).

    Article Title: Reprogramming of Pancreatic Exocrine Cells AR42J Into Insulin-producing Cells Using mRNAs for Pdx1, Ngn3, and MafA Transcription Factors
    Article Snippet: The following primary antibodies were used: rabbit anti-Pdx1 (1:200), rabbit anti-MafA (1:200), rabbit anti-insulin (1:300), mouse anti-C-peptide (1:100), mouse anti-glucagon (1:200) (Abcam, Cambridge, United Kingdom), mouse anti-Neurogenin3 (1:800), mouse anti-Pdx1 (1:400) (Developmental Studies Hybridoma Bank, Iowa City, IA), and rabbit anti-α-amylase (1:200) (Sigma-Aldrich).

    Article Title: The Transcription Factor Myt3 Acts as a Pro-Survival Factor in β-cells
    Article Snippet: Sections were co-stained with rabbit anti-Myt3 (1/250) and guinea pig anti-Insulin (1/1000; Linco), guinea pig anti-Glucagon (1/1000; Linco), guinea pig anti-PP (1/100; Linco), goat anti-Somatostatin (1/1000; Santa Cruz) or mouse anti-Pdx1 (1/500; DSHB).

    Article Title: ALDH1B1 is a potential stem / progenitor marker for multiple pancreas progenitor pools
    Article Snippet: Primary antibodies used were: rabbit anti–ALDH1B1 (1:500) ( Stagos et al., 2010 ) rabbit anti-NGN3 (1:200; gift from H. Edlund), rat anti-E-CADHERIN (1:400; Zymed), rat anti-CYTOKERATIN 19 (anti-CK-19; 1:250; DSHB), mouse anti-INSULIN (1:1,000; Sigma), mouse anti-GLUCAGON (1:500; Sigma), mouse anti-BrdU (1:200 DAKO), mouse anti-PDX1 (1:300, DSHB), rabbit anti-AMYLASE (1:300, Sigma), rabbit anti-SOX9 (1:500; Chemicon), PNA-FITC lectin (1:100, Sigma), DBA-Rhodamine (1:100, Vector Laboratories).

    Article Title: VHL-mediated disruption of Sox9 activity compromises β-cell identity and results in diabetes mellitus
    Article Snippet: The following primary antibodies were used: guinea pig anti-insulin (1:300; Millipore), mouse anti-insulin (1:300; Sigma), guinea pig anti-insulin (1:200; Dako North America, Inc.), rabbit anti-glucagon (1:300), guinea pig anti-glucagon (1:300; Millipore), mouse anti-glucagon (1:500; Sigma), rabbit anti-Glut2 (1:500), rabbit anti-Sox9 (1:200; Chemicon), rat anti-somatostatin (1:200; Millipore), mouse anti-Nkx6.1 (1:200; Developmental Studies Hybridoma Bank), rabbit anti-MafA (1:200; Bethyl Laboratories, Inc.), guinea pig anti-Pdx1 (1:200; gift from Mike German, University of California at San Francisco), mouse anti-Pdx1 (1:200; Developmental Studies Hybridoma Bank), rabbit anti-Pdx-1 (1:200; Chemicon), goat anti-Pdx-1 (1:200; R&D Systems), rabbit anti-cleaved caspase-3 (1:200; Cell Signaling), rat anti-HA (1:200; Roche Applied Science), mouse anti-synaptophysin (1:200; Biogenex), goat anti-NeuroD (1:200; Santa Cruz Biotechnology), and mouse anti-β-catenin (1:200; BD Biosciences).

    TUNEL Assay:

    Article Title: p43, a Truncated Form of Thyroid Hormone Receptor α, Regulates Maturation of Pancreatic β Cells
    Article Snippet: The following antibodies were used: guinea pig anti-insulin (1/250; ab7842 Abcam, Cambridge, UK), mouse anti-glucagon (1/100; ab10988 Abcam), rabbit anti-MafA (1/100; IHC-00352 Bethyl Laboratories, Montgomery, TX, USA), mouse anti-PDX1 (1/200; F25A13B Developmental Studies Hybridoma Bank at the University of Iowa (Iowa City, IA, USA)), rabbit anti-PH3 (1/500; 06-570 Millipore, Merck KGaA, Darmstadt, Germany), rabbit anti-HNE (1/100; ab 46545 Abcam).

    Article Title: Pancreas lineage allocation and specification are regulated by sphingosine-1-phosphate signalling
    Article Snippet: Primary antibodies used were rabbit anti-Ngn3 (1:100; Acris), rat anti-E-cadherin (1:400; Zymed), rabbit anti-C-peptide (1:200; Linco), rabbit anti-Amylase (1:300; Sigma), rabbit anti-Ptf1a (1:3,000; Gift from B. Breant), rat anti-Cytokeratin19 (1:250; DSHB), mouse anti-Glucagon (1:500; Sigma), rabbit anti-Pdx1 (1:5,000; Gift from C. Wright), mouse anti-Pdx1 (1:250; DSHB), rabbit anti-Sphk (1:250; Abcam), mouse anti-Nkx6-1 (1:1,000; DSHB), mouse anti-Insulin (1:1,000; Sigma), rabbit anti-PH3 (1:500; Cell Signaling), rabbit anti-Yap1 (1:200; Cell Signaling), rabbit anti-NICD (1:100; Cell Signaling), rat anti-Hes1 (1:500; MBL-Biozol), and rabbit anti-Sel1l (1:250; Abcam).

    Article Title: Reprogramming of Pancreatic Exocrine Cells AR42J Into Insulin-producing Cells Using mRNAs for Pdx1, Ngn3, and MafA Transcription Factors
    Article Snippet: The following primary antibodies were used: rabbit anti-Pdx1 (1:200), rabbit anti-MafA (1:200), rabbit anti-insulin (1:300), mouse anti-C-peptide (1:100), mouse anti-glucagon (1:200) (Abcam, Cambridge, United Kingdom), mouse anti-Neurogenin3 (1:800), mouse anti-Pdx1 (1:400) (Developmental Studies Hybridoma Bank, Iowa City, IA), and rabbit anti-α-amylase (1:200) (Sigma-Aldrich).

    Article Title: The Transcription Factor Myt3 Acts as a Pro-Survival Factor in β-cells
    Article Snippet: Sections were co-stained with rabbit anti-Myt3 (1/250) and guinea pig anti-Insulin (1/1000; Linco), guinea pig anti-Glucagon (1/1000; Linco), guinea pig anti-PP (1/100; Linco), goat anti-Somatostatin (1/1000; Santa Cruz) or mouse anti-Pdx1 (1/500; DSHB).

    Article Title: ALDH1B1 is a potential stem / progenitor marker for multiple pancreas progenitor pools
    Article Snippet: Primary antibodies used were: rabbit anti–ALDH1B1 (1:500) ( Stagos et al., 2010 ) rabbit anti-NGN3 (1:200; gift from H. Edlund), rat anti-E-CADHERIN (1:400; Zymed), rat anti-CYTOKERATIN 19 (anti-CK-19; 1:250; DSHB), mouse anti-INSULIN (1:1,000; Sigma), mouse anti-GLUCAGON (1:500; Sigma), mouse anti-BrdU (1:200 DAKO), mouse anti-PDX1 (1:300, DSHB), rabbit anti-AMYLASE (1:300, Sigma), rabbit anti-SOX9 (1:500; Chemicon), PNA-FITC lectin (1:100, Sigma), DBA-Rhodamine (1:100, Vector Laboratories).

    Article Title: VHL-mediated disruption of Sox9 activity compromises β-cell identity and results in diabetes mellitus
    Article Snippet: The following primary antibodies were used: guinea pig anti-insulin (1:300; Millipore), mouse anti-insulin (1:300; Sigma), guinea pig anti-insulin (1:200; Dako North America, Inc.), rabbit anti-glucagon (1:300), guinea pig anti-glucagon (1:300; Millipore), mouse anti-glucagon (1:500; Sigma), rabbit anti-Glut2 (1:500), rabbit anti-Sox9 (1:200; Chemicon), rat anti-somatostatin (1:200; Millipore), mouse anti-Nkx6.1 (1:200; Developmental Studies Hybridoma Bank), rabbit anti-MafA (1:200; Bethyl Laboratories, Inc.), guinea pig anti-Pdx1 (1:200; gift from Mike German, University of California at San Francisco), mouse anti-Pdx1 (1:200; Developmental Studies Hybridoma Bank), rabbit anti-Pdx-1 (1:200; Chemicon), goat anti-Pdx-1 (1:200; R&D Systems), rabbit anti-cleaved caspase-3 (1:200; Cell Signaling), rat anti-HA (1:200; Roche Applied Science), mouse anti-synaptophysin (1:200; Biogenex), goat anti-NeuroD (1:200; Santa Cruz Biotechnology), and mouse anti-β-catenin (1:200; BD Biosciences).

    Activation Assay:

    Article Title: p43, a Truncated Form of Thyroid Hormone Receptor α, Regulates Maturation of Pancreatic β Cells
    Article Snippet: The following antibodies were used: guinea pig anti-insulin (1/250; ab7842 Abcam, Cambridge, UK), mouse anti-glucagon (1/100; ab10988 Abcam), rabbit anti-MafA (1/100; IHC-00352 Bethyl Laboratories, Montgomery, TX, USA), mouse anti-PDX1 (1/200; F25A13B Developmental Studies Hybridoma Bank at the University of Iowa (Iowa City, IA, USA)), rabbit anti-PH3 (1/500; 06-570 Millipore, Merck KGaA, Darmstadt, Germany), rabbit anti-HNE (1/100; ab 46545 Abcam).

    Article Title: Pancreas lineage allocation and specification are regulated by sphingosine-1-phosphate signalling
    Article Snippet: Primary antibodies used were rabbit anti-Ngn3 (1:100; Acris), rat anti-E-cadherin (1:400; Zymed), rabbit anti-C-peptide (1:200; Linco), rabbit anti-Amylase (1:300; Sigma), rabbit anti-Ptf1a (1:3,000; Gift from B. Breant), rat anti-Cytokeratin19 (1:250; DSHB), mouse anti-Glucagon (1:500; Sigma), rabbit anti-Pdx1 (1:5,000; Gift from C. Wright), mouse anti-Pdx1 (1:250; DSHB), rabbit anti-Sphk (1:250; Abcam), mouse anti-Nkx6-1 (1:1,000; DSHB), mouse anti-Insulin (1:1,000; Sigma), rabbit anti-PH3 (1:500; Cell Signaling), rabbit anti-Yap1 (1:200; Cell Signaling), rabbit anti-NICD (1:100; Cell Signaling), rat anti-Hes1 (1:500; MBL-Biozol), and rabbit anti-Sel1l (1:250; Abcam).

    Article Title: Reprogramming of Pancreatic Exocrine Cells AR42J Into Insulin-producing Cells Using mRNAs for Pdx1, Ngn3, and MafA Transcription Factors
    Article Snippet: The following primary antibodies were used: rabbit anti-Pdx1 (1:200), rabbit anti-MafA (1:200), rabbit anti-insulin (1:300), mouse anti-C-peptide (1:100), mouse anti-glucagon (1:200) (Abcam, Cambridge, United Kingdom), mouse anti-Neurogenin3 (1:800), mouse anti-Pdx1 (1:400) (Developmental Studies Hybridoma Bank, Iowa City, IA), and rabbit anti-α-amylase (1:200) (Sigma-Aldrich).

    Article Title: The Transcription Factor Myt3 Acts as a Pro-Survival Factor in β-cells
    Article Snippet: Sections were co-stained with rabbit anti-Myt3 (1/250) and guinea pig anti-Insulin (1/1000; Linco), guinea pig anti-Glucagon (1/1000; Linco), guinea pig anti-PP (1/100; Linco), goat anti-Somatostatin (1/1000; Santa Cruz) or mouse anti-Pdx1 (1/500; DSHB).

    Article Title: ALDH1B1 is a potential stem / progenitor marker for multiple pancreas progenitor pools
    Article Snippet: Primary antibodies used were: rabbit anti–ALDH1B1 (1:500) ( Stagos et al., 2010 ) rabbit anti-NGN3 (1:200; gift from H. Edlund), rat anti-E-CADHERIN (1:400; Zymed), rat anti-CYTOKERATIN 19 (anti-CK-19; 1:250; DSHB), mouse anti-INSULIN (1:1,000; Sigma), mouse anti-GLUCAGON (1:500; Sigma), mouse anti-BrdU (1:200 DAKO), mouse anti-PDX1 (1:300, DSHB), rabbit anti-AMYLASE (1:300, Sigma), rabbit anti-SOX9 (1:500; Chemicon), PNA-FITC lectin (1:100, Sigma), DBA-Rhodamine (1:100, Vector Laboratories).

    Article Title: VHL-mediated disruption of Sox9 activity compromises β-cell identity and results in diabetes mellitus
    Article Snippet: The following primary antibodies were used: guinea pig anti-insulin (1:300; Millipore), mouse anti-insulin (1:300; Sigma), guinea pig anti-insulin (1:200; Dako North America, Inc.), rabbit anti-glucagon (1:300), guinea pig anti-glucagon (1:300; Millipore), mouse anti-glucagon (1:500; Sigma), rabbit anti-Glut2 (1:500), rabbit anti-Sox9 (1:200; Chemicon), rat anti-somatostatin (1:200; Millipore), mouse anti-Nkx6.1 (1:200; Developmental Studies Hybridoma Bank), rabbit anti-MafA (1:200; Bethyl Laboratories, Inc.), guinea pig anti-Pdx1 (1:200; gift from Mike German, University of California at San Francisco), mouse anti-Pdx1 (1:200; Developmental Studies Hybridoma Bank), rabbit anti-Pdx-1 (1:200; Chemicon), goat anti-Pdx-1 (1:200; R&D Systems), rabbit anti-cleaved caspase-3 (1:200; Cell Signaling), rat anti-HA (1:200; Roche Applied Science), mouse anti-synaptophysin (1:200; Biogenex), goat anti-NeuroD (1:200; Santa Cruz Biotechnology), and mouse anti-β-catenin (1:200; BD Biosciences).



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    Becton Dickinson mouse anti-pdx1 af488
    Production of ready to use EndoC-βH5 cells and characterization by immuno-labeling . ( A ) Schematic representation of integrated lentiviral vector used to produce EndoC-βH5 cells. Upon integration the loxP site located into the deleted U3 3′ LTR region is duplicated. The entire integrated sequences are flanked with loxP sites thus allowing CRE mediated excision. The integrated sequence contains a first transcription unit expressing SV40 LT or hTERT under the control of the rat insulin promoter (RIP) and a second unit expressing HSV1 TK under the control of the polyomavirus enhancer (pY). ( B ) The immortalized cell line is transduced with a lentiviral vector expressing a tamoxifen inducible form of CRE (CRE-ERT2) expressed under the control of RIP. After massive amplification, cells are treated for 7 days with 1 μM tamoxifen followed by 1 day of ganciclovir to allow SV40LT and hTERT excision and destruction of non-excised cells that expressed TK. The resulting EndoC-βH5 cells are frozen to produce ready to use vials. Panels A and B were created with BioRender.com . ( C ) FACS analysis profile (black curves) of insulin, <t>PDX1</t> and NKX6.1 expression in EndoC-βH5 cells. The grey curve represents the isotype control. ( D ) Phase contrast photograph of ready to use EndoC-βH5 thawed cells. ( E ) Insulin (red), PDX1 (green) and nuclei (DAPI, blue) immunofluorescent staining of EndoC-βH5 cells. Scale bar = 50 μm.
    Mouse Anti Pdx1 Af488, supplied by Becton Dickinson, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/mouse+anti-pdx1/p62+antibody/pmc10407753-58-19-31
    Average 90 stars, based on 1 article reviews
    mouse anti-pdx1 af488 - by Bioz Stars, 2026-09
    90/100 stars
      Buy from Supplier

    90
    Becton Dickinson pe mouse anti-pdx1

    Pe Mouse Anti Pdx1, supplied by Becton Dickinson, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/mouse+anti-pdx1/pdx1+pe+antibody/pmc10261893-21-0-4
    Average 90 stars, based on 1 article reviews
    pe mouse anti-pdx1 - by Bioz Stars, 2026-09
    90/100 stars
      Buy from Supplier

    Image Search Results


    Efficient CRISPR/Cas9 RNP-mediated targeting of PDX1 in primary human islet cells (A) Schematic of the human pseudoislet electroporation system with CRISPR/Cas9 RNP complexes. (B) Fragment of human PDX1 exon 1 sequence, showing the sgRNA sequence in gray. (C) Human pseudoislets 1 day post-electroporation with Cas9-EGFP RNP and PDX1 sgRNAs complexes (top panel: bright field; bottom panel: blue light, 488 nm, scale bar: 500 μm). (D) Quantification of editing frequency mapped to the reference amplicon using CRISPResso analysis. As expected, the mutations cluster around the predicted cleavage position based on the sgRNA sequence (expected cleavage site indicated by a vertical dotted line; sgRNA sequence: violet line). (E) Quantification of indels after CRISPR/Cas9 RNP targeting of PDX1 (PDX1, red) or using a control sgRNA sequence (Cas9, gray) (n = 6 independent human islet donors). (F) Total PDX1 + nuclei scored relative to total cells (DAPI+) counted from immunostaining. See also <xref ref-type=Figure S2 (n = 3 independent donor samples). (G) qRT-PCR of pseudoislets, CRISPR-PDX1 (red), normalized to the CRISPR-Control (n = 3 independent donors). (H) Total Insulin content of CRISPR/Cas9 electroporated cells normalized to genomic DNA (gDNA) content (n = 4 independent donor samples). Data are presented as mean values ±SE. Two-tailed t tests were used to generate p values. See also Figures S1–S3 . " width="100%" height="100%">

    Journal: iScience

    Article Title: Multiplexed CRISPR gene editing in primary human islet cells with Cas9 ribonucleoprotein

    doi: 10.1016/j.isci.2023.108693

    Figure Lengend Snippet: Efficient CRISPR/Cas9 RNP-mediated targeting of PDX1 in primary human islet cells (A) Schematic of the human pseudoislet electroporation system with CRISPR/Cas9 RNP complexes. (B) Fragment of human PDX1 exon 1 sequence, showing the sgRNA sequence in gray. (C) Human pseudoislets 1 day post-electroporation with Cas9-EGFP RNP and PDX1 sgRNAs complexes (top panel: bright field; bottom panel: blue light, 488 nm, scale bar: 500 μm). (D) Quantification of editing frequency mapped to the reference amplicon using CRISPResso analysis. As expected, the mutations cluster around the predicted cleavage position based on the sgRNA sequence (expected cleavage site indicated by a vertical dotted line; sgRNA sequence: violet line). (E) Quantification of indels after CRISPR/Cas9 RNP targeting of PDX1 (PDX1, red) or using a control sgRNA sequence (Cas9, gray) (n = 6 independent human islet donors). (F) Total PDX1 + nuclei scored relative to total cells (DAPI+) counted from immunostaining. See also Figure S2 (n = 3 independent donor samples). (G) qRT-PCR of pseudoislets, CRISPR-PDX1 (red), normalized to the CRISPR-Control (n = 3 independent donors). (H) Total Insulin content of CRISPR/Cas9 electroporated cells normalized to genomic DNA (gDNA) content (n = 4 independent donor samples). Data are presented as mean values ±SE. Two-tailed t tests were used to generate p values. See also Figures S1–S3 .

    Article Snippet: The following primary antibodies were used: mouse anti-PDX1, (BD 562160), Guinea pig anti-insulin (a0564 Dako), mouse anti-glucagon (G2654 Sigma), Alexa Fluor 555 Donkey anti Mouse Secondary Antibody (A32773; Invitrogen), Alexa Fluor 647-AffiniPure Donkey Anti-Mouse IgG (H + L) (715-605-150; Jackson ImmunoResearch).

    Techniques: CRISPR, Electroporation, Sequencing, Amplification, Immunostaining, Quantitative RT-PCR, Two Tailed Test

    Journal: iScience

    Article Title: Multiplexed CRISPR gene editing in primary human islet cells with Cas9 ribonucleoprotein

    doi: 10.1016/j.isci.2023.108693

    Figure Lengend Snippet:

    Article Snippet: The following primary antibodies were used: mouse anti-PDX1, (BD 562160), Guinea pig anti-insulin (a0564 Dako), mouse anti-glucagon (G2654 Sigma), Alexa Fluor 555 Donkey anti Mouse Secondary Antibody (A32773; Invitrogen), Alexa Fluor 647-AffiniPure Donkey Anti-Mouse IgG (H + L) (715-605-150; Jackson ImmunoResearch).

    Techniques: Recombinant, Isolation, DNA Extraction, Expressing, Enzyme-linked Immunosorbent Assay, Software, Transfection

    Production of ready to use EndoC-βH5 cells and characterization by immuno-labeling . ( A ) Schematic representation of integrated lentiviral vector used to produce EndoC-βH5 cells. Upon integration the loxP site located into the deleted U3 3′ LTR region is duplicated. The entire integrated sequences are flanked with loxP sites thus allowing CRE mediated excision. The integrated sequence contains a first transcription unit expressing SV40 LT or hTERT under the control of the rat insulin promoter (RIP) and a second unit expressing HSV1 TK under the control of the polyomavirus enhancer (pY). ( B ) The immortalized cell line is transduced with a lentiviral vector expressing a tamoxifen inducible form of CRE (CRE-ERT2) expressed under the control of RIP. After massive amplification, cells are treated for 7 days with 1 μM tamoxifen followed by 1 day of ganciclovir to allow SV40LT and hTERT excision and destruction of non-excised cells that expressed TK. The resulting EndoC-βH5 cells are frozen to produce ready to use vials. Panels A and B were created with BioRender.com . ( C ) FACS analysis profile (black curves) of insulin, PDX1 and NKX6.1 expression in EndoC-βH5 cells. The grey curve represents the isotype control. ( D ) Phase contrast photograph of ready to use EndoC-βH5 thawed cells. ( E ) Insulin (red), PDX1 (green) and nuclei (DAPI, blue) immunofluorescent staining of EndoC-βH5 cells. Scale bar = 50 μm.

    Journal: Molecular Metabolism

    Article Title: EndoC-βH5 cells are storable and ready-to-use human pancreatic beta cells with physiological insulin secretion

    doi: 10.1016/j.molmet.2023.101772

    Figure Lengend Snippet: Production of ready to use EndoC-βH5 cells and characterization by immuno-labeling . ( A ) Schematic representation of integrated lentiviral vector used to produce EndoC-βH5 cells. Upon integration the loxP site located into the deleted U3 3′ LTR region is duplicated. The entire integrated sequences are flanked with loxP sites thus allowing CRE mediated excision. The integrated sequence contains a first transcription unit expressing SV40 LT or hTERT under the control of the rat insulin promoter (RIP) and a second unit expressing HSV1 TK under the control of the polyomavirus enhancer (pY). ( B ) The immortalized cell line is transduced with a lentiviral vector expressing a tamoxifen inducible form of CRE (CRE-ERT2) expressed under the control of RIP. After massive amplification, cells are treated for 7 days with 1 μM tamoxifen followed by 1 day of ganciclovir to allow SV40LT and hTERT excision and destruction of non-excised cells that expressed TK. The resulting EndoC-βH5 cells are frozen to produce ready to use vials. Panels A and B were created with BioRender.com . ( C ) FACS analysis profile (black curves) of insulin, PDX1 and NKX6.1 expression in EndoC-βH5 cells. The grey curve represents the isotype control. ( D ) Phase contrast photograph of ready to use EndoC-βH5 thawed cells. ( E ) Insulin (red), PDX1 (green) and nuclei (DAPI, blue) immunofluorescent staining of EndoC-βH5 cells. Scale bar = 50 μm.

    Article Snippet: The following antibodies were used: mouse anti-insulin AF-647 and isotype (1 μl/10 5 cells, 565689 and 557783, BD Biosciences), mouse anti-PDX1 AF488 and isotype (1 μl/10 5 cells, 562274 and 557721, BD Biosciences) and mouse anti-Nkx6.1 PE and isotype (0.5 μl/10 5 cells, 563023 and 554680, BD Biosciences).

    Techniques: Immunolabeling, Plasmid Preparation, Sequencing, Expressing, Transduction, Amplification, Staining

    Journal: Cell Reports Methods

    Article Title: Differentiation of stem cell-derived pancreatic progenitors into insulin-secreting islet clusters in a multiwell-based static 3D culture system

    doi: 10.1016/j.crmeth.2023.100466

    Figure Lengend Snippet:

    Article Snippet: PE mouse anti-PDX1 , BD Biosciences , Cat# 562161; RRID: AB_10893589.

    Techniques: Recombinant, Modification, Enzyme-linked Immunosorbent Assay, Lysis, Software, Microscopy