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ATGen Inc hsp27, human recombinant protein
Hsp27, Human Recombinant Protein, supplied by ATGen Inc, 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/hsp27%2C+human+recombinant+protein/hsp27+protein/pm40609540-233-90-93
Average 90 stars, based on 1 article reviews
hsp27, human recombinant protein - by Bioz Stars, 2026-09
90/100 stars

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Imaging:

Article Title: Conformational ligand-directed targeting of calcium-dependent receptors in acute trauma.
Article Snippet: REAGENT or RESOURCE SOURCE IDENTIFIER CRQRPASGC peptide (C1-C9 disulfide bridge) CPC Scientific N/A CARASGERGC peptide (C1-C10 disulfide bridge) CPC Scientific N/A CEARASGSRC peptide (C1-C10 disulfide bridge) CPC Scientific N/A CVKASGSRAC peptide (C1-C10 disulfide bridge) CPC Scientific N/A CVANFGRAPC peptide (C1-C10 disulfide bridge) CPC Scientific N/A DFO-KK-PEG2-CRQRPASGC-PEG2-KK (C1-C9 disulfide bridge) CPC Scientific N/A DFO-KK-PEG2-CRQRAASGC-PEG2-KK (C1-C9 disulfide bridge) CPC Scientific N/A NH2-Cys-KK-PEG2-CRQRPASGC-PEG2KK-COOH (C1-C9 disulfide bridge) CPC Scientific N/A 89Zr 3D Imaging LLC N/A 111In MPI Research N/A CALR, human recombinant protein OriGene Abnova Cat#TP303222 Cat#H00000811-P01 CASQ1, human recombinant protein Abnova Cat#H00000844-P01 HSP27, human recombinant protein ATGen Cat#ATGP0444 HSP22, human recombinant protein bioWORLD Cat#22060349-1 CRYAB, human recombinant protein Abcam Cat#ab48779 Dual Endogenous Enzyme-Blocking Reagent Agilent Dako Cat#S200389-2 Protein Block Agilent Dako Cat#X090930-2 Alizarin Red S Sigma-Aldrich Cat#A5533 Polyethylene glycol (PEG) 8000 Thermo Scientific Chemicals Cat#043443-A3 Triton X-114 Sigma-Aldrich Cat#9036-19-5 Critical commercial assays DNeasy Blood and Tissue Kit QIAGEN Cat#69504 Plasmid Plus Giga Kit QIAGEN Cat#12991 QIAquick PCR Purification Kit QIAGEN Cat#28106 QIAquick Nucleotide Removal Kit QIAGEN Cat#28306 QIAprep Spin Miniprep Kit QIAGEN Cat#27104 Sequenase DNA polymerase Amersham Cat#70770 Kinetic-QCL Kinetic Chromogenic LAL Assay Lonza Bioscience Cat#50-650U Pierce BCA Protein Assay Kit Thermo Scientific Cat#23227 Experimental models: Organisms/strains Sinclair miniature pigs (Sus scrofa domesticus) Sinclair Bio Resources N/A Sprague-Dawley rats (Rattus norvegicus) MPI Research N/A Oligonucleotides fUSE5 forward primer: 50-TGAGGTGGTATCGGCAATGA-30 Sigma-Aldrich N/A fUSE5 reverse primer: 50-GGATGCTGTATTTAGGCCGTTT-30 Sigma-Aldrich N/A NGS forward primer: 50-CGCAATTCCTTTAGTTGTTCC-30 Sigma-Aldrich N/A NGS reverse primer: 50-TGAATTTTCTGTATGAGGTTTTGC-30 Sigma-Aldrich N/A Deposited data NGS dataset from phage display peptide library screenings Zenodo https://doi.org/10.5281/ zenodo.14871106 (Continued on next page) e2 Med 6, 100638, July 11, 2025 OPEN ACCESS

Recombinant:

Article Title: Conformational ligand-directed targeting of calcium-dependent receptors in acute trauma.
Article Snippet: REAGENT or RESOURCE SOURCE IDENTIFIER CRQRPASGC peptide (C1-C9 disulfide bridge) CPC Scientific N/A CARASGERGC peptide (C1-C10 disulfide bridge) CPC Scientific N/A CEARASGSRC peptide (C1-C10 disulfide bridge) CPC Scientific N/A CVKASGSRAC peptide (C1-C10 disulfide bridge) CPC Scientific N/A CVANFGRAPC peptide (C1-C10 disulfide bridge) CPC Scientific N/A DFO-KK-PEG2-CRQRPASGC-PEG2-KK (C1-C9 disulfide bridge) CPC Scientific N/A DFO-KK-PEG2-CRQRAASGC-PEG2-KK (C1-C9 disulfide bridge) CPC Scientific N/A NH2-Cys-KK-PEG2-CRQRPASGC-PEG2KK-COOH (C1-C9 disulfide bridge) CPC Scientific N/A 89Zr 3D Imaging LLC N/A 111In MPI Research N/A CALR, human recombinant protein OriGene Abnova Cat#TP303222 Cat#H00000811-P01 CASQ1, human recombinant protein Abnova Cat#H00000844-P01 HSP27, human recombinant protein ATGen Cat#ATGP0444 HSP22, human recombinant protein bioWORLD Cat#22060349-1 CRYAB, human recombinant protein Abcam Cat#ab48779 Dual Endogenous Enzyme-Blocking Reagent Agilent Dako Cat#S200389-2 Protein Block Agilent Dako Cat#X090930-2 Alizarin Red S Sigma-Aldrich Cat#A5533 Polyethylene glycol (PEG) 8000 Thermo Scientific Chemicals Cat#043443-A3 Triton X-114 Sigma-Aldrich Cat#9036-19-5 Critical commercial assays DNeasy Blood and Tissue Kit QIAGEN Cat#69504 Plasmid Plus Giga Kit QIAGEN Cat#12991 QIAquick PCR Purification Kit QIAGEN Cat#28106 QIAquick Nucleotide Removal Kit QIAGEN Cat#28306 QIAprep Spin Miniprep Kit QIAGEN Cat#27104 Sequenase DNA polymerase Amersham Cat#70770 Kinetic-QCL Kinetic Chromogenic LAL Assay Lonza Bioscience Cat#50-650U Pierce BCA Protein Assay Kit Thermo Scientific Cat#23227 Experimental models: Organisms/strains Sinclair miniature pigs (Sus scrofa domesticus) Sinclair Bio Resources N/A Sprague-Dawley rats (Rattus norvegicus) MPI Research N/A Oligonucleotides fUSE5 forward primer: 50-TGAGGTGGTATCGGCAATGA-30 Sigma-Aldrich N/A fUSE5 reverse primer: 50-GGATGCTGTATTTAGGCCGTTT-30 Sigma-Aldrich N/A NGS forward primer: 50-CGCAATTCCTTTAGTTGTTCC-30 Sigma-Aldrich N/A NGS reverse primer: 50-TGAATTTTCTGTATGAGGTTTTGC-30 Sigma-Aldrich N/A Deposited data NGS dataset from phage display peptide library screenings Zenodo https://doi.org/10.5281/ zenodo.14871106 (Continued on next page) e2 Med 6, 100638, July 11, 2025 OPEN ACCESS

Blocking Assay:

Article Title: Conformational ligand-directed targeting of calcium-dependent receptors in acute trauma.
Article Snippet: REAGENT or RESOURCE SOURCE IDENTIFIER CRQRPASGC peptide (C1-C9 disulfide bridge) CPC Scientific N/A CARASGERGC peptide (C1-C10 disulfide bridge) CPC Scientific N/A CEARASGSRC peptide (C1-C10 disulfide bridge) CPC Scientific N/A CVKASGSRAC peptide (C1-C10 disulfide bridge) CPC Scientific N/A CVANFGRAPC peptide (C1-C10 disulfide bridge) CPC Scientific N/A DFO-KK-PEG2-CRQRPASGC-PEG2-KK (C1-C9 disulfide bridge) CPC Scientific N/A DFO-KK-PEG2-CRQRAASGC-PEG2-KK (C1-C9 disulfide bridge) CPC Scientific N/A NH2-Cys-KK-PEG2-CRQRPASGC-PEG2KK-COOH (C1-C9 disulfide bridge) CPC Scientific N/A 89Zr 3D Imaging LLC N/A 111In MPI Research N/A CALR, human recombinant protein OriGene Abnova Cat#TP303222 Cat#H00000811-P01 CASQ1, human recombinant protein Abnova Cat#H00000844-P01 HSP27, human recombinant protein ATGen Cat#ATGP0444 HSP22, human recombinant protein bioWORLD Cat#22060349-1 CRYAB, human recombinant protein Abcam Cat#ab48779 Dual Endogenous Enzyme-Blocking Reagent Agilent Dako Cat#S200389-2 Protein Block Agilent Dako Cat#X090930-2 Alizarin Red S Sigma-Aldrich Cat#A5533 Polyethylene glycol (PEG) 8000 Thermo Scientific Chemicals Cat#043443-A3 Triton X-114 Sigma-Aldrich Cat#9036-19-5 Critical commercial assays DNeasy Blood and Tissue Kit QIAGEN Cat#69504 Plasmid Plus Giga Kit QIAGEN Cat#12991 QIAquick PCR Purification Kit QIAGEN Cat#28106 QIAquick Nucleotide Removal Kit QIAGEN Cat#28306 QIAprep Spin Miniprep Kit QIAGEN Cat#27104 Sequenase DNA polymerase Amersham Cat#70770 Kinetic-QCL Kinetic Chromogenic LAL Assay Lonza Bioscience Cat#50-650U Pierce BCA Protein Assay Kit Thermo Scientific Cat#23227 Experimental models: Organisms/strains Sinclair miniature pigs (Sus scrofa domesticus) Sinclair Bio Resources N/A Sprague-Dawley rats (Rattus norvegicus) MPI Research N/A Oligonucleotides fUSE5 forward primer: 50-TGAGGTGGTATCGGCAATGA-30 Sigma-Aldrich N/A fUSE5 reverse primer: 50-GGATGCTGTATTTAGGCCGTTT-30 Sigma-Aldrich N/A NGS forward primer: 50-CGCAATTCCTTTAGTTGTTCC-30 Sigma-Aldrich N/A NGS reverse primer: 50-TGAATTTTCTGTATGAGGTTTTGC-30 Sigma-Aldrich N/A Deposited data NGS dataset from phage display peptide library screenings Zenodo https://doi.org/10.5281/ zenodo.14871106 (Continued on next page) e2 Med 6, 100638, July 11, 2025 OPEN ACCESS

Plasmid Preparation:

Article Title: Conformational ligand-directed targeting of calcium-dependent receptors in acute trauma.
Article Snippet: REAGENT or RESOURCE SOURCE IDENTIFIER CRQRPASGC peptide (C1-C9 disulfide bridge) CPC Scientific N/A CARASGERGC peptide (C1-C10 disulfide bridge) CPC Scientific N/A CEARASGSRC peptide (C1-C10 disulfide bridge) CPC Scientific N/A CVKASGSRAC peptide (C1-C10 disulfide bridge) CPC Scientific N/A CVANFGRAPC peptide (C1-C10 disulfide bridge) CPC Scientific N/A DFO-KK-PEG2-CRQRPASGC-PEG2-KK (C1-C9 disulfide bridge) CPC Scientific N/A DFO-KK-PEG2-CRQRAASGC-PEG2-KK (C1-C9 disulfide bridge) CPC Scientific N/A NH2-Cys-KK-PEG2-CRQRPASGC-PEG2KK-COOH (C1-C9 disulfide bridge) CPC Scientific N/A 89Zr 3D Imaging LLC N/A 111In MPI Research N/A CALR, human recombinant protein OriGene Abnova Cat#TP303222 Cat#H00000811-P01 CASQ1, human recombinant protein Abnova Cat#H00000844-P01 HSP27, human recombinant protein ATGen Cat#ATGP0444 HSP22, human recombinant protein bioWORLD Cat#22060349-1 CRYAB, human recombinant protein Abcam Cat#ab48779 Dual Endogenous Enzyme-Blocking Reagent Agilent Dako Cat#S200389-2 Protein Block Agilent Dako Cat#X090930-2 Alizarin Red S Sigma-Aldrich Cat#A5533 Polyethylene glycol (PEG) 8000 Thermo Scientific Chemicals Cat#043443-A3 Triton X-114 Sigma-Aldrich Cat#9036-19-5 Critical commercial assays DNeasy Blood and Tissue Kit QIAGEN Cat#69504 Plasmid Plus Giga Kit QIAGEN Cat#12991 QIAquick PCR Purification Kit QIAGEN Cat#28106 QIAquick Nucleotide Removal Kit QIAGEN Cat#28306 QIAprep Spin Miniprep Kit QIAGEN Cat#27104 Sequenase DNA polymerase Amersham Cat#70770 Kinetic-QCL Kinetic Chromogenic LAL Assay Lonza Bioscience Cat#50-650U Pierce BCA Protein Assay Kit Thermo Scientific Cat#23227 Experimental models: Organisms/strains Sinclair miniature pigs (Sus scrofa domesticus) Sinclair Bio Resources N/A Sprague-Dawley rats (Rattus norvegicus) MPI Research N/A Oligonucleotides fUSE5 forward primer: 50-TGAGGTGGTATCGGCAATGA-30 Sigma-Aldrich N/A fUSE5 reverse primer: 50-GGATGCTGTATTTAGGCCGTTT-30 Sigma-Aldrich N/A NGS forward primer: 50-CGCAATTCCTTTAGTTGTTCC-30 Sigma-Aldrich N/A NGS reverse primer: 50-TGAATTTTCTGTATGAGGTTTTGC-30 Sigma-Aldrich N/A Deposited data NGS dataset from phage display peptide library screenings Zenodo https://doi.org/10.5281/ zenodo.14871106 (Continued on next page) e2 Med 6, 100638, July 11, 2025 OPEN ACCESS

Polymerase Chain Reaction:

Article Title: Conformational ligand-directed targeting of calcium-dependent receptors in acute trauma.
Article Snippet: REAGENT or RESOURCE SOURCE IDENTIFIER CRQRPASGC peptide (C1-C9 disulfide bridge) CPC Scientific N/A CARASGERGC peptide (C1-C10 disulfide bridge) CPC Scientific N/A CEARASGSRC peptide (C1-C10 disulfide bridge) CPC Scientific N/A CVKASGSRAC peptide (C1-C10 disulfide bridge) CPC Scientific N/A CVANFGRAPC peptide (C1-C10 disulfide bridge) CPC Scientific N/A DFO-KK-PEG2-CRQRPASGC-PEG2-KK (C1-C9 disulfide bridge) CPC Scientific N/A DFO-KK-PEG2-CRQRAASGC-PEG2-KK (C1-C9 disulfide bridge) CPC Scientific N/A NH2-Cys-KK-PEG2-CRQRPASGC-PEG2KK-COOH (C1-C9 disulfide bridge) CPC Scientific N/A 89Zr 3D Imaging LLC N/A 111In MPI Research N/A CALR, human recombinant protein OriGene Abnova Cat#TP303222 Cat#H00000811-P01 CASQ1, human recombinant protein Abnova Cat#H00000844-P01 HSP27, human recombinant protein ATGen Cat#ATGP0444 HSP22, human recombinant protein bioWORLD Cat#22060349-1 CRYAB, human recombinant protein Abcam Cat#ab48779 Dual Endogenous Enzyme-Blocking Reagent Agilent Dako Cat#S200389-2 Protein Block Agilent Dako Cat#X090930-2 Alizarin Red S Sigma-Aldrich Cat#A5533 Polyethylene glycol (PEG) 8000 Thermo Scientific Chemicals Cat#043443-A3 Triton X-114 Sigma-Aldrich Cat#9036-19-5 Critical commercial assays DNeasy Blood and Tissue Kit QIAGEN Cat#69504 Plasmid Plus Giga Kit QIAGEN Cat#12991 QIAquick PCR Purification Kit QIAGEN Cat#28106 QIAquick Nucleotide Removal Kit QIAGEN Cat#28306 QIAprep Spin Miniprep Kit QIAGEN Cat#27104 Sequenase DNA polymerase Amersham Cat#70770 Kinetic-QCL Kinetic Chromogenic LAL Assay Lonza Bioscience Cat#50-650U Pierce BCA Protein Assay Kit Thermo Scientific Cat#23227 Experimental models: Organisms/strains Sinclair miniature pigs (Sus scrofa domesticus) Sinclair Bio Resources N/A Sprague-Dawley rats (Rattus norvegicus) MPI Research N/A Oligonucleotides fUSE5 forward primer: 50-TGAGGTGGTATCGGCAATGA-30 Sigma-Aldrich N/A fUSE5 reverse primer: 50-GGATGCTGTATTTAGGCCGTTT-30 Sigma-Aldrich N/A NGS forward primer: 50-CGCAATTCCTTTAGTTGTTCC-30 Sigma-Aldrich N/A NGS reverse primer: 50-TGAATTTTCTGTATGAGGTTTTGC-30 Sigma-Aldrich N/A Deposited data NGS dataset from phage display peptide library screenings Zenodo https://doi.org/10.5281/ zenodo.14871106 (Continued on next page) e2 Med 6, 100638, July 11, 2025 OPEN ACCESS

Purification:

Article Title: Conformational ligand-directed targeting of calcium-dependent receptors in acute trauma.
Article Snippet: REAGENT or RESOURCE SOURCE IDENTIFIER CRQRPASGC peptide (C1-C9 disulfide bridge) CPC Scientific N/A CARASGERGC peptide (C1-C10 disulfide bridge) CPC Scientific N/A CEARASGSRC peptide (C1-C10 disulfide bridge) CPC Scientific N/A CVKASGSRAC peptide (C1-C10 disulfide bridge) CPC Scientific N/A CVANFGRAPC peptide (C1-C10 disulfide bridge) CPC Scientific N/A DFO-KK-PEG2-CRQRPASGC-PEG2-KK (C1-C9 disulfide bridge) CPC Scientific N/A DFO-KK-PEG2-CRQRAASGC-PEG2-KK (C1-C9 disulfide bridge) CPC Scientific N/A NH2-Cys-KK-PEG2-CRQRPASGC-PEG2KK-COOH (C1-C9 disulfide bridge) CPC Scientific N/A 89Zr 3D Imaging LLC N/A 111In MPI Research N/A CALR, human recombinant protein OriGene Abnova Cat#TP303222 Cat#H00000811-P01 CASQ1, human recombinant protein Abnova Cat#H00000844-P01 HSP27, human recombinant protein ATGen Cat#ATGP0444 HSP22, human recombinant protein bioWORLD Cat#22060349-1 CRYAB, human recombinant protein Abcam Cat#ab48779 Dual Endogenous Enzyme-Blocking Reagent Agilent Dako Cat#S200389-2 Protein Block Agilent Dako Cat#X090930-2 Alizarin Red S Sigma-Aldrich Cat#A5533 Polyethylene glycol (PEG) 8000 Thermo Scientific Chemicals Cat#043443-A3 Triton X-114 Sigma-Aldrich Cat#9036-19-5 Critical commercial assays DNeasy Blood and Tissue Kit QIAGEN Cat#69504 Plasmid Plus Giga Kit QIAGEN Cat#12991 QIAquick PCR Purification Kit QIAGEN Cat#28106 QIAquick Nucleotide Removal Kit QIAGEN Cat#28306 QIAprep Spin Miniprep Kit QIAGEN Cat#27104 Sequenase DNA polymerase Amersham Cat#70770 Kinetic-QCL Kinetic Chromogenic LAL Assay Lonza Bioscience Cat#50-650U Pierce BCA Protein Assay Kit Thermo Scientific Cat#23227 Experimental models: Organisms/strains Sinclair miniature pigs (Sus scrofa domesticus) Sinclair Bio Resources N/A Sprague-Dawley rats (Rattus norvegicus) MPI Research N/A Oligonucleotides fUSE5 forward primer: 50-TGAGGTGGTATCGGCAATGA-30 Sigma-Aldrich N/A fUSE5 reverse primer: 50-GGATGCTGTATTTAGGCCGTTT-30 Sigma-Aldrich N/A NGS forward primer: 50-CGCAATTCCTTTAGTTGTTCC-30 Sigma-Aldrich N/A NGS reverse primer: 50-TGAATTTTCTGTATGAGGTTTTGC-30 Sigma-Aldrich N/A Deposited data NGS dataset from phage display peptide library screenings Zenodo https://doi.org/10.5281/ zenodo.14871106 (Continued on next page) e2 Med 6, 100638, July 11, 2025 OPEN ACCESS

Chromogenic LAL Assay:

Article Title: Conformational ligand-directed targeting of calcium-dependent receptors in acute trauma.
Article Snippet: REAGENT or RESOURCE SOURCE IDENTIFIER CRQRPASGC peptide (C1-C9 disulfide bridge) CPC Scientific N/A CARASGERGC peptide (C1-C10 disulfide bridge) CPC Scientific N/A CEARASGSRC peptide (C1-C10 disulfide bridge) CPC Scientific N/A CVKASGSRAC peptide (C1-C10 disulfide bridge) CPC Scientific N/A CVANFGRAPC peptide (C1-C10 disulfide bridge) CPC Scientific N/A DFO-KK-PEG2-CRQRPASGC-PEG2-KK (C1-C9 disulfide bridge) CPC Scientific N/A DFO-KK-PEG2-CRQRAASGC-PEG2-KK (C1-C9 disulfide bridge) CPC Scientific N/A NH2-Cys-KK-PEG2-CRQRPASGC-PEG2KK-COOH (C1-C9 disulfide bridge) CPC Scientific N/A 89Zr 3D Imaging LLC N/A 111In MPI Research N/A CALR, human recombinant protein OriGene Abnova Cat#TP303222 Cat#H00000811-P01 CASQ1, human recombinant protein Abnova Cat#H00000844-P01 HSP27, human recombinant protein ATGen Cat#ATGP0444 HSP22, human recombinant protein bioWORLD Cat#22060349-1 CRYAB, human recombinant protein Abcam Cat#ab48779 Dual Endogenous Enzyme-Blocking Reagent Agilent Dako Cat#S200389-2 Protein Block Agilent Dako Cat#X090930-2 Alizarin Red S Sigma-Aldrich Cat#A5533 Polyethylene glycol (PEG) 8000 Thermo Scientific Chemicals Cat#043443-A3 Triton X-114 Sigma-Aldrich Cat#9036-19-5 Critical commercial assays DNeasy Blood and Tissue Kit QIAGEN Cat#69504 Plasmid Plus Giga Kit QIAGEN Cat#12991 QIAquick PCR Purification Kit QIAGEN Cat#28106 QIAquick Nucleotide Removal Kit QIAGEN Cat#28306 QIAprep Spin Miniprep Kit QIAGEN Cat#27104 Sequenase DNA polymerase Amersham Cat#70770 Kinetic-QCL Kinetic Chromogenic LAL Assay Lonza Bioscience Cat#50-650U Pierce BCA Protein Assay Kit Thermo Scientific Cat#23227 Experimental models: Organisms/strains Sinclair miniature pigs (Sus scrofa domesticus) Sinclair Bio Resources N/A Sprague-Dawley rats (Rattus norvegicus) MPI Research N/A Oligonucleotides fUSE5 forward primer: 50-TGAGGTGGTATCGGCAATGA-30 Sigma-Aldrich N/A fUSE5 reverse primer: 50-GGATGCTGTATTTAGGCCGTTT-30 Sigma-Aldrich N/A NGS forward primer: 50-CGCAATTCCTTTAGTTGTTCC-30 Sigma-Aldrich N/A NGS reverse primer: 50-TGAATTTTCTGTATGAGGTTTTGC-30 Sigma-Aldrich N/A Deposited data NGS dataset from phage display peptide library screenings Zenodo https://doi.org/10.5281/ zenodo.14871106 (Continued on next page) e2 Med 6, 100638, July 11, 2025 OPEN ACCESS

Bicinchoninic Acid Protein Assay:

Article Title: Conformational ligand-directed targeting of calcium-dependent receptors in acute trauma.
Article Snippet: REAGENT or RESOURCE SOURCE IDENTIFIER CRQRPASGC peptide (C1-C9 disulfide bridge) CPC Scientific N/A CARASGERGC peptide (C1-C10 disulfide bridge) CPC Scientific N/A CEARASGSRC peptide (C1-C10 disulfide bridge) CPC Scientific N/A CVKASGSRAC peptide (C1-C10 disulfide bridge) CPC Scientific N/A CVANFGRAPC peptide (C1-C10 disulfide bridge) CPC Scientific N/A DFO-KK-PEG2-CRQRPASGC-PEG2-KK (C1-C9 disulfide bridge) CPC Scientific N/A DFO-KK-PEG2-CRQRAASGC-PEG2-KK (C1-C9 disulfide bridge) CPC Scientific N/A NH2-Cys-KK-PEG2-CRQRPASGC-PEG2KK-COOH (C1-C9 disulfide bridge) CPC Scientific N/A 89Zr 3D Imaging LLC N/A 111In MPI Research N/A CALR, human recombinant protein OriGene Abnova Cat#TP303222 Cat#H00000811-P01 CASQ1, human recombinant protein Abnova Cat#H00000844-P01 HSP27, human recombinant protein ATGen Cat#ATGP0444 HSP22, human recombinant protein bioWORLD Cat#22060349-1 CRYAB, human recombinant protein Abcam Cat#ab48779 Dual Endogenous Enzyme-Blocking Reagent Agilent Dako Cat#S200389-2 Protein Block Agilent Dako Cat#X090930-2 Alizarin Red S Sigma-Aldrich Cat#A5533 Polyethylene glycol (PEG) 8000 Thermo Scientific Chemicals Cat#043443-A3 Triton X-114 Sigma-Aldrich Cat#9036-19-5 Critical commercial assays DNeasy Blood and Tissue Kit QIAGEN Cat#69504 Plasmid Plus Giga Kit QIAGEN Cat#12991 QIAquick PCR Purification Kit QIAGEN Cat#28106 QIAquick Nucleotide Removal Kit QIAGEN Cat#28306 QIAprep Spin Miniprep Kit QIAGEN Cat#27104 Sequenase DNA polymerase Amersham Cat#70770 Kinetic-QCL Kinetic Chromogenic LAL Assay Lonza Bioscience Cat#50-650U Pierce BCA Protein Assay Kit Thermo Scientific Cat#23227 Experimental models: Organisms/strains Sinclair miniature pigs (Sus scrofa domesticus) Sinclair Bio Resources N/A Sprague-Dawley rats (Rattus norvegicus) MPI Research N/A Oligonucleotides fUSE5 forward primer: 50-TGAGGTGGTATCGGCAATGA-30 Sigma-Aldrich N/A fUSE5 reverse primer: 50-GGATGCTGTATTTAGGCCGTTT-30 Sigma-Aldrich N/A NGS forward primer: 50-CGCAATTCCTTTAGTTGTTCC-30 Sigma-Aldrich N/A NGS reverse primer: 50-TGAATTTTCTGTATGAGGTTTTGC-30 Sigma-Aldrich N/A Deposited data NGS dataset from phage display peptide library screenings Zenodo https://doi.org/10.5281/ zenodo.14871106 (Continued on next page) e2 Med 6, 100638, July 11, 2025 OPEN ACCESS

Next-Generation Sequencing:

Article Title: Conformational ligand-directed targeting of calcium-dependent receptors in acute trauma.
Article Snippet: REAGENT or RESOURCE SOURCE IDENTIFIER CRQRPASGC peptide (C1-C9 disulfide bridge) CPC Scientific N/A CARASGERGC peptide (C1-C10 disulfide bridge) CPC Scientific N/A CEARASGSRC peptide (C1-C10 disulfide bridge) CPC Scientific N/A CVKASGSRAC peptide (C1-C10 disulfide bridge) CPC Scientific N/A CVANFGRAPC peptide (C1-C10 disulfide bridge) CPC Scientific N/A DFO-KK-PEG2-CRQRPASGC-PEG2-KK (C1-C9 disulfide bridge) CPC Scientific N/A DFO-KK-PEG2-CRQRAASGC-PEG2-KK (C1-C9 disulfide bridge) CPC Scientific N/A NH2-Cys-KK-PEG2-CRQRPASGC-PEG2KK-COOH (C1-C9 disulfide bridge) CPC Scientific N/A 89Zr 3D Imaging LLC N/A 111In MPI Research N/A CALR, human recombinant protein OriGene Abnova Cat#TP303222 Cat#H00000811-P01 CASQ1, human recombinant protein Abnova Cat#H00000844-P01 HSP27, human recombinant protein ATGen Cat#ATGP0444 HSP22, human recombinant protein bioWORLD Cat#22060349-1 CRYAB, human recombinant protein Abcam Cat#ab48779 Dual Endogenous Enzyme-Blocking Reagent Agilent Dako Cat#S200389-2 Protein Block Agilent Dako Cat#X090930-2 Alizarin Red S Sigma-Aldrich Cat#A5533 Polyethylene glycol (PEG) 8000 Thermo Scientific Chemicals Cat#043443-A3 Triton X-114 Sigma-Aldrich Cat#9036-19-5 Critical commercial assays DNeasy Blood and Tissue Kit QIAGEN Cat#69504 Plasmid Plus Giga Kit QIAGEN Cat#12991 QIAquick PCR Purification Kit QIAGEN Cat#28106 QIAquick Nucleotide Removal Kit QIAGEN Cat#28306 QIAprep Spin Miniprep Kit QIAGEN Cat#27104 Sequenase DNA polymerase Amersham Cat#70770 Kinetic-QCL Kinetic Chromogenic LAL Assay Lonza Bioscience Cat#50-650U Pierce BCA Protein Assay Kit Thermo Scientific Cat#23227 Experimental models: Organisms/strains Sinclair miniature pigs (Sus scrofa domesticus) Sinclair Bio Resources N/A Sprague-Dawley rats (Rattus norvegicus) MPI Research N/A Oligonucleotides fUSE5 forward primer: 50-TGAGGTGGTATCGGCAATGA-30 Sigma-Aldrich N/A fUSE5 reverse primer: 50-GGATGCTGTATTTAGGCCGTTT-30 Sigma-Aldrich N/A NGS forward primer: 50-CGCAATTCCTTTAGTTGTTCC-30 Sigma-Aldrich N/A NGS reverse primer: 50-TGAATTTTCTGTATGAGGTTTTGC-30 Sigma-Aldrich N/A Deposited data NGS dataset from phage display peptide library screenings Zenodo https://doi.org/10.5281/ zenodo.14871106 (Continued on next page) e2 Med 6, 100638, July 11, 2025 OPEN ACCESS



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Paracrine HSP27 promotes OSCC chemoresistance through TAMs. A Schematic presentation of the analyzed tumor models, Vehicle or HSP27-shRNA OSCC cells were orthotopically injected into BALB/c nude mice. B - C Tumor pictures ( B ) and growth analysis ( C ) over 21 days show the mean tumor volume at the indicated time points following implantation, statistical significance was determined by 2-way ANOVA. Volume of individual tumors at day 21 is shown in the box plot; statistical significance was determined by Welch t-test. D - E HSP27 mRNA ( D ), protein ( E ) levels in CAL27 cells with NC-siRNA or HSP27-siRNA induced TAMs-CM, detected by RT-qPCR and Western blotting in the whole-cell lysates. F Apoptosis relative gene BAX, BIM, BAD and Caspase3 mRNA levels in CAL27 cells with NC-siRNA or HSP27-siRNA induced TAMs-CM, detected by RT-qPCR. G Apoptosis relative gene BAX, BIM, BAD and Caspase3 mRNA levels in CAL27 cells without or with <t>rhHSP27</t> (2 μg/mL) induced TAMs-CM, detected by RT-qPCR. H Relative cell apoptosis level in CAL27 cells with NC-siRNA or HSP27-siRNA induced TAMs-CM, detected by Flow Cytometry. I Relative cell apoptosis level in CAL27 cells without or with rhHSP27 (2μg/mL) induced TAMs-CM, detected by Flow Cytometry. J Analysis of ( H ), determined with relative ratio of apoptosis in total per 10 4 cells. K Apoptosis relative BAX, BIM, BAD and Cleaved-caspase3 protein levels in CAL27 cells with NC-siRNA or HSP27-siRNA induced TAMs-CM, detected by Western blotting in the whole-cell lysates. L Analysis of ( I ), determined with relative ratio of apoptosis in total per 10 . 4 cells. M Apoptosis relative BAX, BIM, BAD and Cleaved-caspase3 protein levels in CAL27 cells without or with rhHSP27 (2 μg/mL) induced TAMs-CM, detected by Western blotting in the whole-cell lysates. N – O Analysis of ( K ) and ( M ). T-tests and two-way ANOVA. Means ± SD of at least three separate experiments. ns, no significance. * P < 0.05, ** P < 0.01, *** P < 0.001, and **** P < 0.0001
Rhhsp27, supplied by R&D Systems, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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R&D Systems recombinant hspb1
Paracrine HSP27 promotes OSCC chemoresistance through TAMs. A Schematic presentation of the analyzed tumor models, Vehicle or HSP27-shRNA OSCC cells were orthotopically injected into BALB/c nude mice. B - C Tumor pictures ( B ) and growth analysis ( C ) over 21 days show the mean tumor volume at the indicated time points following implantation, statistical significance was determined by 2-way ANOVA. Volume of individual tumors at day 21 is shown in the box plot; statistical significance was determined by Welch t-test. D - E HSP27 mRNA ( D ), protein ( E ) levels in CAL27 cells with NC-siRNA or HSP27-siRNA induced TAMs-CM, detected by RT-qPCR and Western blotting in the whole-cell lysates. F Apoptosis relative gene BAX, BIM, BAD and Caspase3 mRNA levels in CAL27 cells with NC-siRNA or HSP27-siRNA induced TAMs-CM, detected by RT-qPCR. G Apoptosis relative gene BAX, BIM, BAD and Caspase3 mRNA levels in CAL27 cells without or with <t>rhHSP27</t> (2 μg/mL) induced TAMs-CM, detected by RT-qPCR. H Relative cell apoptosis level in CAL27 cells with NC-siRNA or HSP27-siRNA induced TAMs-CM, detected by Flow Cytometry. I Relative cell apoptosis level in CAL27 cells without or with rhHSP27 (2μg/mL) induced TAMs-CM, detected by Flow Cytometry. J Analysis of ( H ), determined with relative ratio of apoptosis in total per 10 4 cells. K Apoptosis relative BAX, BIM, BAD and Cleaved-caspase3 protein levels in CAL27 cells with NC-siRNA or HSP27-siRNA induced TAMs-CM, detected by Western blotting in the whole-cell lysates. L Analysis of ( I ), determined with relative ratio of apoptosis in total per 10 . 4 cells. M Apoptosis relative BAX, BIM, BAD and Cleaved-caspase3 protein levels in CAL27 cells without or with rhHSP27 (2 μg/mL) induced TAMs-CM, detected by Western blotting in the whole-cell lysates. N – O Analysis of ( K ) and ( M ). T-tests and two-way ANOVA. Means ± SD of at least three separate experiments. ns, no significance. * P < 0.05, ** P < 0.01, *** P < 0.001, and **** P < 0.0001
Recombinant Hspb1, supplied by R&D Systems, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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R&D Systems 1580 hs
Paracrine HSP27 promotes OSCC chemoresistance through TAMs. A Schematic presentation of the analyzed tumor models, Vehicle or HSP27-shRNA OSCC cells were orthotopically injected into BALB/c nude mice. B - C Tumor pictures ( B ) and growth analysis ( C ) over 21 days show the mean tumor volume at the indicated time points following implantation, statistical significance was determined by 2-way ANOVA. Volume of individual tumors at day 21 is shown in the box plot; statistical significance was determined by Welch t-test. D - E HSP27 mRNA ( D ), protein ( E ) levels in CAL27 cells with NC-siRNA or HSP27-siRNA induced TAMs-CM, detected by RT-qPCR and Western blotting in the whole-cell lysates. F Apoptosis relative gene BAX, BIM, BAD and Caspase3 mRNA levels in CAL27 cells with NC-siRNA or HSP27-siRNA induced TAMs-CM, detected by RT-qPCR. G Apoptosis relative gene BAX, BIM, BAD and Caspase3 mRNA levels in CAL27 cells without or with <t>rhHSP27</t> (2 μg/mL) induced TAMs-CM, detected by RT-qPCR. H Relative cell apoptosis level in CAL27 cells with NC-siRNA or HSP27-siRNA induced TAMs-CM, detected by Flow Cytometry. I Relative cell apoptosis level in CAL27 cells without or with rhHSP27 (2μg/mL) induced TAMs-CM, detected by Flow Cytometry. J Analysis of ( H ), determined with relative ratio of apoptosis in total per 10 4 cells. K Apoptosis relative BAX, BIM, BAD and Cleaved-caspase3 protein levels in CAL27 cells with NC-siRNA or HSP27-siRNA induced TAMs-CM, detected by Western blotting in the whole-cell lysates. L Analysis of ( I ), determined with relative ratio of apoptosis in total per 10 . 4 cells. M Apoptosis relative BAX, BIM, BAD and Cleaved-caspase3 protein levels in CAL27 cells without or with rhHSP27 (2 μg/mL) induced TAMs-CM, detected by Western blotting in the whole-cell lysates. N – O Analysis of ( K ) and ( M ). T-tests and two-way ANOVA. Means ± SD of at least three separate experiments. ns, no significance. * P < 0.05, ** P < 0.01, *** P < 0.001, and **** P < 0.0001
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R&D Systems page 14 37 recombinant human protein hsp27
Paracrine HSP27 promotes OSCC chemoresistance through TAMs. A Schematic presentation of the analyzed tumor models, Vehicle or HSP27-shRNA OSCC cells were orthotopically injected into BALB/c nude mice. B - C Tumor pictures ( B ) and growth analysis ( C ) over 21 days show the mean tumor volume at the indicated time points following implantation, statistical significance was determined by 2-way ANOVA. Volume of individual tumors at day 21 is shown in the box plot; statistical significance was determined by Welch t-test. D - E HSP27 mRNA ( D ), protein ( E ) levels in CAL27 cells with NC-siRNA or HSP27-siRNA induced TAMs-CM, detected by RT-qPCR and Western blotting in the whole-cell lysates. F Apoptosis relative gene BAX, BIM, BAD and Caspase3 mRNA levels in CAL27 cells with NC-siRNA or HSP27-siRNA induced TAMs-CM, detected by RT-qPCR. G Apoptosis relative gene BAX, BIM, BAD and Caspase3 mRNA levels in CAL27 cells without or with <t>rhHSP27</t> (2 μg/mL) induced TAMs-CM, detected by RT-qPCR. H Relative cell apoptosis level in CAL27 cells with NC-siRNA or HSP27-siRNA induced TAMs-CM, detected by Flow Cytometry. I Relative cell apoptosis level in CAL27 cells without or with rhHSP27 (2μg/mL) induced TAMs-CM, detected by Flow Cytometry. J Analysis of ( H ), determined with relative ratio of apoptosis in total per 10 4 cells. K Apoptosis relative BAX, BIM, BAD and Cleaved-caspase3 protein levels in CAL27 cells with NC-siRNA or HSP27-siRNA induced TAMs-CM, detected by Western blotting in the whole-cell lysates. L Analysis of ( I ), determined with relative ratio of apoptosis in total per 10 . 4 cells. M Apoptosis relative BAX, BIM, BAD and Cleaved-caspase3 protein levels in CAL27 cells without or with rhHSP27 (2 μg/mL) induced TAMs-CM, detected by Western blotting in the whole-cell lysates. N – O Analysis of ( K ) and ( M ). T-tests and two-way ANOVA. Means ± SD of at least three separate experiments. ns, no significance. * P < 0.05, ** P < 0.01, *** P < 0.001, and **** P < 0.0001
Page 14 37 Recombinant Human Protein Hsp27, supplied by R&D Systems, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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R&D Systems rhhspb1
( A ) Primary mouse astrocytes were treated for 24 hours either with conditioned medium from astrocytes transfected with V5-hHSPB1 or with <t>rhHSPB1.</t> Created with BioRender.com . ( B ) Anti-V5 and anti-human HSPB1 (hHSPB1) antibodies were used to detect the levels of V5-hHSPB1 in astrocyte lysates exposed to conditioned medium for 24 hours. ( C ) An anti-hHSPB1 antibody was used to detect the levels of human HSPB1 in astrocytes treated with the indicated concentrations of rhHSPB1 for 24 hours or with heat-inactivated (HI) rhHSPB1. ( D ) Confocal live imaging of astrocytes exposed to rhHSPB1 labeled with Oregon Green for 24 hours and stained with lysotracker. ( E ) Primary mouse neurons were treated with either conditioned medium from astrocytes transfected with V5-hHSPB1 and grown in Neurobasal medium or with rhHSPB1. Created with BioRender.com . ( F ) Anti-V5 and anti-hHSPB1 antibodies were used to detect the levels of V5-hHSPB1 in neuron lysates exposed to conditioned medium for 8 hours. ( G ) An anti-hHSPB1 antibody was used to detect the levels of human HSPB1 in neurons treated with the indicated concentrations of rhHSPB1, or heat-inactivated rhHSPB1, for 24 hours. Equivalent amounts of rhHSPB1 in control or upon heat inactivation were run in parallel to confirm its detection by Western blotting. Note that the background detected in neuron lysates at 0 ng/ml is unspecific since (i) neurons in culture do not express HSPB1, as we have shown in , and (ii) human HSPB1 antibody does not recognize the mouse HSPB1 [as shown in (C), where astrocytes express high levels of murine HSPB1]. ( H ) Confocal live imaging of neurons exposed for 6 hours to rhHSPB1 labeled with Oregon Green and stained with lysotracker.
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Image Search Results


Journal: Cellular and Molecular Gastroenterology and Hepatology

Article Title: Citrulline Inhibits Clostridioides difficile Infection With Anti-inflammatory Effects

doi: 10.1016/j.jcmgh.2025.101474

Figure Lengend Snippet:

Article Snippet: Macrophages (with or without siRNA transfection) were pretreated with citrulline or recombinant human HSP27 (1580-HS-050, R&D Systems) for 30 minutes and incubated with toxin B for 6 hours.

Techniques:

Citrulline promoted IL-10 expression with HSP27 phosphorylation in toxin B-treated macrophages. ( A–B ) Phospho-kinase array. Primary human macrophages were treated with or without citrulline for 30 minutes, followed by either PBS or toxin B for 2 hours. The cells were lysed, and the lysates were assayed with the protein Proteome Profiler Human Phospho-Kinase Array Kit (ARY003C, R&D Systems). The images were captured by the Bio-Rad ChemiDoc Imaging system and analyzed by Bio-Rad Image Lab software. The cell lysates were collected for the protein arrays. Citrulline increased phosphorylated HSP27 levels in toxin B-treated macrophages. Results were pooled from 4 experiments (mean ± SD). One-way ANOVA was used. ( C ) Phosphorylated HSP27 levels. The fresh human colonic explants were pretreated with 10 μM citrulline for 30 minutes, followed by incubation with 0.1 mg/mL toxin B for 2 hours. The phosphorylated HSP27 levels were determined by ELISA. Results were pooled from 4 tissue donors (mean ± SD). One-way ANOVA was used. ( D ) Total HSP27 levels. The fresh human colonic explants were pretreated with 10 μM citrulline for 30 minutes, followed by 6 hours of incubation with 0.1 μg/mL toxin A or toxin B. Total HSP27 levels in conditioned media were measured by ELISA. Results were pooled from 4 tissue donors (mean ± SD). One-way ANOVA was used, but no statistically significant difference was found. ( E–F ) Macrophages were transiently transfected with control siRNA (sc-37007) or HSP27 siRNA (sc-29350) from Santa Cruz Biotechnology overnight. ( E ) Total HSP27 ELISA. After overnight transfection, the macrophages were incubated with serum-free RPMI1640 media for 24 hours. Secreted total HSP27 levels of transfected macrophages were measured by ELISA. Results were pooled from 4 experiments (mean ± SD). One-way ANOVA was used. ( F ) IL-10 ELISA. Macrophages (with or without siRNA transfection) were pretreated with citrulline or recombinant human HSP27 (1580-HS-050, R&D Systems) for 30 minutes and incubated with toxin B for 6 hours. IL-10 levels in conditioned media were detected by ELISA. Results were pooled from four experiments (mean ± SD). One-way ANOVA was used.

Journal: Cellular and Molecular Gastroenterology and Hepatology

Article Title: Citrulline Inhibits Clostridioides difficile Infection With Anti-inflammatory Effects

doi: 10.1016/j.jcmgh.2025.101474

Figure Lengend Snippet: Citrulline promoted IL-10 expression with HSP27 phosphorylation in toxin B-treated macrophages. ( A–B ) Phospho-kinase array. Primary human macrophages were treated with or without citrulline for 30 minutes, followed by either PBS or toxin B for 2 hours. The cells were lysed, and the lysates were assayed with the protein Proteome Profiler Human Phospho-Kinase Array Kit (ARY003C, R&D Systems). The images were captured by the Bio-Rad ChemiDoc Imaging system and analyzed by Bio-Rad Image Lab software. The cell lysates were collected for the protein arrays. Citrulline increased phosphorylated HSP27 levels in toxin B-treated macrophages. Results were pooled from 4 experiments (mean ± SD). One-way ANOVA was used. ( C ) Phosphorylated HSP27 levels. The fresh human colonic explants were pretreated with 10 μM citrulline for 30 minutes, followed by incubation with 0.1 mg/mL toxin B for 2 hours. The phosphorylated HSP27 levels were determined by ELISA. Results were pooled from 4 tissue donors (mean ± SD). One-way ANOVA was used. ( D ) Total HSP27 levels. The fresh human colonic explants were pretreated with 10 μM citrulline for 30 minutes, followed by 6 hours of incubation with 0.1 μg/mL toxin A or toxin B. Total HSP27 levels in conditioned media were measured by ELISA. Results were pooled from 4 tissue donors (mean ± SD). One-way ANOVA was used, but no statistically significant difference was found. ( E–F ) Macrophages were transiently transfected with control siRNA (sc-37007) or HSP27 siRNA (sc-29350) from Santa Cruz Biotechnology overnight. ( E ) Total HSP27 ELISA. After overnight transfection, the macrophages were incubated with serum-free RPMI1640 media for 24 hours. Secreted total HSP27 levels of transfected macrophages were measured by ELISA. Results were pooled from 4 experiments (mean ± SD). One-way ANOVA was used. ( F ) IL-10 ELISA. Macrophages (with or without siRNA transfection) were pretreated with citrulline or recombinant human HSP27 (1580-HS-050, R&D Systems) for 30 minutes and incubated with toxin B for 6 hours. IL-10 levels in conditioned media were detected by ELISA. Results were pooled from four experiments (mean ± SD). One-way ANOVA was used.

Article Snippet: Macrophages (with or without siRNA transfection) were pretreated with citrulline or recombinant human HSP27 (1580-HS-050, R&D Systems) for 30 minutes and incubated with toxin B for 6 hours.

Techniques: Expressing, Phospho-proteomics, Imaging, Software, Incubation, Enzyme-linked Immunosorbent Assay, Transfection, Control, Recombinant

Information on Fresh Human Colonic Tissues, Primary Macrophages, PBMCs, and Reagents

Journal: Cellular and Molecular Gastroenterology and Hepatology

Article Title: Citrulline Inhibits Clostridioides difficile Infection With Anti-inflammatory Effects

doi: 10.1016/j.jcmgh.2025.101474

Figure Lengend Snippet: Information on Fresh Human Colonic Tissues, Primary Macrophages, PBMCs, and Reagents

Article Snippet: Macrophages (with or without siRNA transfection) were pretreated with citrulline or recombinant human HSP27 (1580-HS-050, R&D Systems) for 30 minutes and incubated with toxin B for 6 hours.

Techniques:

Paracrine HSP27 promotes OSCC chemoresistance through TAMs. A Schematic presentation of the analyzed tumor models, Vehicle or HSP27-shRNA OSCC cells were orthotopically injected into BALB/c nude mice. B - C Tumor pictures ( B ) and growth analysis ( C ) over 21 days show the mean tumor volume at the indicated time points following implantation, statistical significance was determined by 2-way ANOVA. Volume of individual tumors at day 21 is shown in the box plot; statistical significance was determined by Welch t-test. D - E HSP27 mRNA ( D ), protein ( E ) levels in CAL27 cells with NC-siRNA or HSP27-siRNA induced TAMs-CM, detected by RT-qPCR and Western blotting in the whole-cell lysates. F Apoptosis relative gene BAX, BIM, BAD and Caspase3 mRNA levels in CAL27 cells with NC-siRNA or HSP27-siRNA induced TAMs-CM, detected by RT-qPCR. G Apoptosis relative gene BAX, BIM, BAD and Caspase3 mRNA levels in CAL27 cells without or with rhHSP27 (2 μg/mL) induced TAMs-CM, detected by RT-qPCR. H Relative cell apoptosis level in CAL27 cells with NC-siRNA or HSP27-siRNA induced TAMs-CM, detected by Flow Cytometry. I Relative cell apoptosis level in CAL27 cells without or with rhHSP27 (2μg/mL) induced TAMs-CM, detected by Flow Cytometry. J Analysis of ( H ), determined with relative ratio of apoptosis in total per 10 4 cells. K Apoptosis relative BAX, BIM, BAD and Cleaved-caspase3 protein levels in CAL27 cells with NC-siRNA or HSP27-siRNA induced TAMs-CM, detected by Western blotting in the whole-cell lysates. L Analysis of ( I ), determined with relative ratio of apoptosis in total per 10 . 4 cells. M Apoptosis relative BAX, BIM, BAD and Cleaved-caspase3 protein levels in CAL27 cells without or with rhHSP27 (2 μg/mL) induced TAMs-CM, detected by Western blotting in the whole-cell lysates. N – O Analysis of ( K ) and ( M ). T-tests and two-way ANOVA. Means ± SD of at least three separate experiments. ns, no significance. * P < 0.05, ** P < 0.01, *** P < 0.001, and **** P < 0.0001

Journal: Cell Biology and Toxicology

Article Title: HSP27/IL-6 axis promotes OSCC chemoresistance, invasion and migration by orchestrating macrophages via a positive feedback loop

doi: 10.1007/s10565-024-09983-1

Figure Lengend Snippet: Paracrine HSP27 promotes OSCC chemoresistance through TAMs. A Schematic presentation of the analyzed tumor models, Vehicle or HSP27-shRNA OSCC cells were orthotopically injected into BALB/c nude mice. B - C Tumor pictures ( B ) and growth analysis ( C ) over 21 days show the mean tumor volume at the indicated time points following implantation, statistical significance was determined by 2-way ANOVA. Volume of individual tumors at day 21 is shown in the box plot; statistical significance was determined by Welch t-test. D - E HSP27 mRNA ( D ), protein ( E ) levels in CAL27 cells with NC-siRNA or HSP27-siRNA induced TAMs-CM, detected by RT-qPCR and Western blotting in the whole-cell lysates. F Apoptosis relative gene BAX, BIM, BAD and Caspase3 mRNA levels in CAL27 cells with NC-siRNA or HSP27-siRNA induced TAMs-CM, detected by RT-qPCR. G Apoptosis relative gene BAX, BIM, BAD and Caspase3 mRNA levels in CAL27 cells without or with rhHSP27 (2 μg/mL) induced TAMs-CM, detected by RT-qPCR. H Relative cell apoptosis level in CAL27 cells with NC-siRNA or HSP27-siRNA induced TAMs-CM, detected by Flow Cytometry. I Relative cell apoptosis level in CAL27 cells without or with rhHSP27 (2μg/mL) induced TAMs-CM, detected by Flow Cytometry. J Analysis of ( H ), determined with relative ratio of apoptosis in total per 10 4 cells. K Apoptosis relative BAX, BIM, BAD and Cleaved-caspase3 protein levels in CAL27 cells with NC-siRNA or HSP27-siRNA induced TAMs-CM, detected by Western blotting in the whole-cell lysates. L Analysis of ( I ), determined with relative ratio of apoptosis in total per 10 . 4 cells. M Apoptosis relative BAX, BIM, BAD and Cleaved-caspase3 protein levels in CAL27 cells without or with rhHSP27 (2 μg/mL) induced TAMs-CM, detected by Western blotting in the whole-cell lysates. N – O Analysis of ( K ) and ( M ). T-tests and two-way ANOVA. Means ± SD of at least three separate experiments. ns, no significance. * P < 0.05, ** P < 0.01, *** P < 0.001, and **** P < 0.0001

Article Snippet: In specific experiments, cells will be treated with rhHSP27 from R&D Systems (1580-HS), recombinant human protein IL-6 (rhIL-6) from Peprotech (AF-200–06–20), and the IL-6 receptor inhibitor tocilizumab (anti-IL-6R) from Selleck (A2012).

Techniques: shRNA, Injection, Quantitative RT-PCR, Western Blot, Flow Cytometry

Paracrine HSP27 promotes OSCC invasion, migration, and EMT through TAMs. A GSEA of transcriptome data cells shows enrichment of a gene signature associated with increased metastasis in HNSCC. B The correlation between the expression of HSP27 and the metastasis pathway enrichment score. C The EMT pathway enrichment score of HSP27 and TLR4. D Representative invasive (upper) and migratory (lower) images of the transwell assays using CAL27 cells (upper chamber) cocultured with TAMs (lower chamber) and preincubated in the presence of rhHSP27 (2 μg/mL) or rhHSP27 (2 μg/mL) with TAK-242 (1 µM). E Representative images of the wound-healing assays using CAL27 cells under the stimulation of TAMs-CM from TAMs preincubated with rhHSP27 (2 μg/mL) or rhHSP27 (2 μg/mL) with TAK-242 (1 µM). F – H statistical analysis of cell invasion ( F ), migration ( G ), and stretch ( H ). I Representative immunofluorescence staining images showing the colocation of HSP27 and TLR4 on the cell membranes of the RAW 264.7 cells incubated with rhHSP27 (2 µg/mL) in the TCM of the CAL27 cells. Nuclei were counterstained with DAPI. J - L N-cadherin, Vimentin mRNA and N-cadherin protein levels in the CAL27 cells under stimulation with the TAMs-CM from the TAMs incubated in the presence of rhHSP27 (2 μg/mL) or rhHSP27 (2 μg/mL) with TAK-242 (1 µM), detected by RT-qPCR and Western blotting. One-way ANOVA. Means ± SD of at least three separate experiments. ns, no significance. * P < 0.05, ** P < 0.01, *** P < 0.001, and **** P < 0.0001

Journal: Cell Biology and Toxicology

Article Title: HSP27/IL-6 axis promotes OSCC chemoresistance, invasion and migration by orchestrating macrophages via a positive feedback loop

doi: 10.1007/s10565-024-09983-1

Figure Lengend Snippet: Paracrine HSP27 promotes OSCC invasion, migration, and EMT through TAMs. A GSEA of transcriptome data cells shows enrichment of a gene signature associated with increased metastasis in HNSCC. B The correlation between the expression of HSP27 and the metastasis pathway enrichment score. C The EMT pathway enrichment score of HSP27 and TLR4. D Representative invasive (upper) and migratory (lower) images of the transwell assays using CAL27 cells (upper chamber) cocultured with TAMs (lower chamber) and preincubated in the presence of rhHSP27 (2 μg/mL) or rhHSP27 (2 μg/mL) with TAK-242 (1 µM). E Representative images of the wound-healing assays using CAL27 cells under the stimulation of TAMs-CM from TAMs preincubated with rhHSP27 (2 μg/mL) or rhHSP27 (2 μg/mL) with TAK-242 (1 µM). F – H statistical analysis of cell invasion ( F ), migration ( G ), and stretch ( H ). I Representative immunofluorescence staining images showing the colocation of HSP27 and TLR4 on the cell membranes of the RAW 264.7 cells incubated with rhHSP27 (2 µg/mL) in the TCM of the CAL27 cells. Nuclei were counterstained with DAPI. J - L N-cadherin, Vimentin mRNA and N-cadherin protein levels in the CAL27 cells under stimulation with the TAMs-CM from the TAMs incubated in the presence of rhHSP27 (2 μg/mL) or rhHSP27 (2 μg/mL) with TAK-242 (1 µM), detected by RT-qPCR and Western blotting. One-way ANOVA. Means ± SD of at least three separate experiments. ns, no significance. * P < 0.05, ** P < 0.01, *** P < 0.001, and **** P < 0.0001

Article Snippet: In specific experiments, cells will be treated with rhHSP27 from R&D Systems (1580-HS), recombinant human protein IL-6 (rhIL-6) from Peprotech (AF-200–06–20), and the IL-6 receptor inhibitor tocilizumab (anti-IL-6R) from Selleck (A2012).

Techniques: Migration, Expressing, Immunofluorescence, Staining, Incubation, Quantitative RT-PCR, Western Blot

HSP27/IL-6 establishes a positive feedback loop between OSCC cells and M2 TAMs. A - B iNOS, IL-12, TNF-α, Arg-1, IL-10, and IL-6 mRNA levels in RAW264.7cells under stimulation with the TCM of the CAL27 cells pretreated without or with HSP27–siRNA, detected by RT-qPCR. C - D iNOS, IL-12, Arg-1, CD163, and IL-6 mRNA levels in RAW264.7cells pretreated without or with rhHSP27 (2 μg/mL) in the presence of CAL27-CM for 12 h, detected by RT-qPCR. E – F IL-12, Arg-1, and IL-6 mRNA and IL-6 protein levels in RAW264.7cells pretreated without or with TAK-242 (1 µM) under the stimulation of rhHSP27 (2 μg/mL) in the presence of CAL27-CM for 12 h, detected by RT-qPCR ( E ) and ELISA ( F ). G - H IL-6 mRNA, protein levels in THP-1 cells with NC-siRNA or HSP27-siRNA induced TCM, detected by RT-qPCR ( G ) and ELISA ( H ). I - J IL-6 mRNA, protein levels in THP-1 cells without or with rhHSP27 (2 μg/mL) stimulated, detected by RT-qPCR ( I ) and ELISA ( J ). K - L IL-6 mRNA, protein levels in RAW264.7 cells with NC-siRNA or HSP27-siRNA induced TCM, detected by RT-qPCR ( K ) and ELISA ( L ). M – N ), IL-6 mRNA, protein levels in Raw264.7 cells without or with rhHSP27 (2 μg/mL) stimulated, detected by RT-qPCR ( M ) and ELISA ( N ). O - P HSP27 mRNA levels in CAL27 cells without or with IL-6 (100 ng/mL) treated ( O ), with TAMs-CM and TAMs-CM with the IL-6R antagonist tocilizumab (TOC, 5 μg/mL) treated ( P ), detected by RT-qPCR. ( Q - S ), HSP27protein levels in CAL27 cells without or with IL-6 (100 ng/mL) treated, with TAMs-CM and TAMs-CM with the IL-6R antagonist tocilizumab (TOC, 5 μg/mL) treated, detected by Western blotting in the whole-cell lysates ( Q ) and ELISA ( R - S ). T - U HSP27 mRNA levels in SCC9 cells without or with IL-6 (100 ng/mL) treated ( T ), with TAMs-CM and TAMs-CM with the IL-6R antagonist tocilizumab (TOC, 5 μg/mL) treated ( U ), detected by RT-qPCR. V-X HSP27 protein levels in SCC9 cells without or with IL-6 (100 ng/mL) treated, with TAMs-CM and TAMs-CM with the IL-6R antagonist tocilizumab (TOC, 5 μg/mL) treated, detected by Western blotting in the whole-cell lysates ( V ) and ELISA ( W - X ). T-tests and one-way ANOVA. Means ± SD of at least three separate experiments. * P < 0.05, ** P < 0.01, *** P < 0.001, and **** P < 0.0001

Journal: Cell Biology and Toxicology

Article Title: HSP27/IL-6 axis promotes OSCC chemoresistance, invasion and migration by orchestrating macrophages via a positive feedback loop

doi: 10.1007/s10565-024-09983-1

Figure Lengend Snippet: HSP27/IL-6 establishes a positive feedback loop between OSCC cells and M2 TAMs. A - B iNOS, IL-12, TNF-α, Arg-1, IL-10, and IL-6 mRNA levels in RAW264.7cells under stimulation with the TCM of the CAL27 cells pretreated without or with HSP27–siRNA, detected by RT-qPCR. C - D iNOS, IL-12, Arg-1, CD163, and IL-6 mRNA levels in RAW264.7cells pretreated without or with rhHSP27 (2 μg/mL) in the presence of CAL27-CM for 12 h, detected by RT-qPCR. E – F IL-12, Arg-1, and IL-6 mRNA and IL-6 protein levels in RAW264.7cells pretreated without or with TAK-242 (1 µM) under the stimulation of rhHSP27 (2 μg/mL) in the presence of CAL27-CM for 12 h, detected by RT-qPCR ( E ) and ELISA ( F ). G - H IL-6 mRNA, protein levels in THP-1 cells with NC-siRNA or HSP27-siRNA induced TCM, detected by RT-qPCR ( G ) and ELISA ( H ). I - J IL-6 mRNA, protein levels in THP-1 cells without or with rhHSP27 (2 μg/mL) stimulated, detected by RT-qPCR ( I ) and ELISA ( J ). K - L IL-6 mRNA, protein levels in RAW264.7 cells with NC-siRNA or HSP27-siRNA induced TCM, detected by RT-qPCR ( K ) and ELISA ( L ). M – N ), IL-6 mRNA, protein levels in Raw264.7 cells without or with rhHSP27 (2 μg/mL) stimulated, detected by RT-qPCR ( M ) and ELISA ( N ). O - P HSP27 mRNA levels in CAL27 cells without or with IL-6 (100 ng/mL) treated ( O ), with TAMs-CM and TAMs-CM with the IL-6R antagonist tocilizumab (TOC, 5 μg/mL) treated ( P ), detected by RT-qPCR. ( Q - S ), HSP27protein levels in CAL27 cells without or with IL-6 (100 ng/mL) treated, with TAMs-CM and TAMs-CM with the IL-6R antagonist tocilizumab (TOC, 5 μg/mL) treated, detected by Western blotting in the whole-cell lysates ( Q ) and ELISA ( R - S ). T - U HSP27 mRNA levels in SCC9 cells without or with IL-6 (100 ng/mL) treated ( T ), with TAMs-CM and TAMs-CM with the IL-6R antagonist tocilizumab (TOC, 5 μg/mL) treated ( U ), detected by RT-qPCR. V-X HSP27 protein levels in SCC9 cells without or with IL-6 (100 ng/mL) treated, with TAMs-CM and TAMs-CM with the IL-6R antagonist tocilizumab (TOC, 5 μg/mL) treated, detected by Western blotting in the whole-cell lysates ( V ) and ELISA ( W - X ). T-tests and one-way ANOVA. Means ± SD of at least three separate experiments. * P < 0.05, ** P < 0.01, *** P < 0.001, and **** P < 0.0001

Article Snippet: In specific experiments, cells will be treated with rhHSP27 from R&D Systems (1580-HS), recombinant human protein IL-6 (rhIL-6) from Peprotech (AF-200–06–20), and the IL-6 receptor inhibitor tocilizumab (anti-IL-6R) from Selleck (A2012).

Techniques: Quantitative RT-PCR, Enzyme-linked Immunosorbent Assay, Western Blot

( A ) Primary mouse astrocytes were treated for 24 hours either with conditioned medium from astrocytes transfected with V5-hHSPB1 or with rhHSPB1. Created with BioRender.com . ( B ) Anti-V5 and anti-human HSPB1 (hHSPB1) antibodies were used to detect the levels of V5-hHSPB1 in astrocyte lysates exposed to conditioned medium for 24 hours. ( C ) An anti-hHSPB1 antibody was used to detect the levels of human HSPB1 in astrocytes treated with the indicated concentrations of rhHSPB1 for 24 hours or with heat-inactivated (HI) rhHSPB1. ( D ) Confocal live imaging of astrocytes exposed to rhHSPB1 labeled with Oregon Green for 24 hours and stained with lysotracker. ( E ) Primary mouse neurons were treated with either conditioned medium from astrocytes transfected with V5-hHSPB1 and grown in Neurobasal medium or with rhHSPB1. Created with BioRender.com . ( F ) Anti-V5 and anti-hHSPB1 antibodies were used to detect the levels of V5-hHSPB1 in neuron lysates exposed to conditioned medium for 8 hours. ( G ) An anti-hHSPB1 antibody was used to detect the levels of human HSPB1 in neurons treated with the indicated concentrations of rhHSPB1, or heat-inactivated rhHSPB1, for 24 hours. Equivalent amounts of rhHSPB1 in control or upon heat inactivation were run in parallel to confirm its detection by Western blotting. Note that the background detected in neuron lysates at 0 ng/ml is unspecific since (i) neurons in culture do not express HSPB1, as we have shown in , and (ii) human HSPB1 antibody does not recognize the mouse HSPB1 [as shown in (C), where astrocytes express high levels of murine HSPB1]. ( H ) Confocal live imaging of neurons exposed for 6 hours to rhHSPB1 labeled with Oregon Green and stained with lysotracker.

Journal: Science Advances

Article Title: Reactive astrocytes secrete the chaperone HSPB1 to mediate neuroprotection

doi: 10.1126/sciadv.adk9884

Figure Lengend Snippet: ( A ) Primary mouse astrocytes were treated for 24 hours either with conditioned medium from astrocytes transfected with V5-hHSPB1 or with rhHSPB1. Created with BioRender.com . ( B ) Anti-V5 and anti-human HSPB1 (hHSPB1) antibodies were used to detect the levels of V5-hHSPB1 in astrocyte lysates exposed to conditioned medium for 24 hours. ( C ) An anti-hHSPB1 antibody was used to detect the levels of human HSPB1 in astrocytes treated with the indicated concentrations of rhHSPB1 for 24 hours or with heat-inactivated (HI) rhHSPB1. ( D ) Confocal live imaging of astrocytes exposed to rhHSPB1 labeled with Oregon Green for 24 hours and stained with lysotracker. ( E ) Primary mouse neurons were treated with either conditioned medium from astrocytes transfected with V5-hHSPB1 and grown in Neurobasal medium or with rhHSPB1. Created with BioRender.com . ( F ) Anti-V5 and anti-hHSPB1 antibodies were used to detect the levels of V5-hHSPB1 in neuron lysates exposed to conditioned medium for 8 hours. ( G ) An anti-hHSPB1 antibody was used to detect the levels of human HSPB1 in neurons treated with the indicated concentrations of rhHSPB1, or heat-inactivated rhHSPB1, for 24 hours. Equivalent amounts of rhHSPB1 in control or upon heat inactivation were run in parallel to confirm its detection by Western blotting. Note that the background detected in neuron lysates at 0 ng/ml is unspecific since (i) neurons in culture do not express HSPB1, as we have shown in , and (ii) human HSPB1 antibody does not recognize the mouse HSPB1 [as shown in (C), where astrocytes express high levels of murine HSPB1]. ( H ) Confocal live imaging of neurons exposed for 6 hours to rhHSPB1 labeled with Oregon Green and stained with lysotracker.

Article Snippet: Neurons at 6 DIV were transduced with AAVs to express wild-type (AAV2/TM8-WT-htau0N4R-EGFP) or mutant (AAV2/TM8-P301L/S320F-htau0N4R-EGFP) htau at 2.5 × 10 10 viral genome (VG)s/ml, followed by treatment with either rhHSPB1 (50 ng/ml in 0.1% BSA, R&D Systems, 1580-HS) or vehicle (0.1% BSA in PBS), at 6 DIV and every 48 hours until 12 DIV.

Techniques: Transfection, Imaging, Labeling, Staining, Control, Western Blot

( A ) Primary astrocytes were pretreated with rhHSPB1 for 24 hours before treatment with either 0.1% BSA (vehicle) or rhHSPB1 (50 ng/ml) and either TNFα + IL-1α or control for further 24 hours. Created with BioRender.com . ( B ) LCN2, SerpinA3N, and iNOS were detected by Western blotting in astrocyte lysates, and levels were quantified relative to GADPH as a loading control ( C to E ). ( F and G ) LCN2 was detected in concentrated conditioned medium and quantified relative to intracellular GAPDH levels (G). ( H ) The concentration of nitrites in the astrocyte medium was measured as an indirect measure of NO using a Griess assay. ( I ) The levels of IL-6 in the astrocyte medium were determined by ELISA. ( J and K ) A cytokine array was used to determine levels of 38 cytokines in the medium in a membrane-based sandwich immunoassay. The average z scores for each of the 38 cytokines was represented in the graph (J) or shown individually for each cytokine in the heatmap (K), where cytokines are ranked from low to high fold change of TNFα + IL-1α/rhHSPB1 versus TNFα + IL-1α/vehicle. Cytokines with an asterisk showed significant increase (red) or decrease (green) in TNFα + IL-1α/rhHSPB1 versus TNFα + IL-1α/vehicle condition. Data are shown as means ± SD ( N = 3). Two-way ANOVA with Tukey’s or Sidak’s multiple comparisons test [(C), (D), (E), (G), (H), and (J)] or unpaired Student’s t test (I). * P < 0.05, ** P < 0.01, *** P < 0.001, **** P < 0.0001.

Journal: Science Advances

Article Title: Reactive astrocytes secrete the chaperone HSPB1 to mediate neuroprotection

doi: 10.1126/sciadv.adk9884

Figure Lengend Snippet: ( A ) Primary astrocytes were pretreated with rhHSPB1 for 24 hours before treatment with either 0.1% BSA (vehicle) or rhHSPB1 (50 ng/ml) and either TNFα + IL-1α or control for further 24 hours. Created with BioRender.com . ( B ) LCN2, SerpinA3N, and iNOS were detected by Western blotting in astrocyte lysates, and levels were quantified relative to GADPH as a loading control ( C to E ). ( F and G ) LCN2 was detected in concentrated conditioned medium and quantified relative to intracellular GAPDH levels (G). ( H ) The concentration of nitrites in the astrocyte medium was measured as an indirect measure of NO using a Griess assay. ( I ) The levels of IL-6 in the astrocyte medium were determined by ELISA. ( J and K ) A cytokine array was used to determine levels of 38 cytokines in the medium in a membrane-based sandwich immunoassay. The average z scores for each of the 38 cytokines was represented in the graph (J) or shown individually for each cytokine in the heatmap (K), where cytokines are ranked from low to high fold change of TNFα + IL-1α/rhHSPB1 versus TNFα + IL-1α/vehicle. Cytokines with an asterisk showed significant increase (red) or decrease (green) in TNFα + IL-1α/rhHSPB1 versus TNFα + IL-1α/vehicle condition. Data are shown as means ± SD ( N = 3). Two-way ANOVA with Tukey’s or Sidak’s multiple comparisons test [(C), (D), (E), (G), (H), and (J)] or unpaired Student’s t test (I). * P < 0.05, ** P < 0.01, *** P < 0.001, **** P < 0.0001.

Article Snippet: Neurons at 6 DIV were transduced with AAVs to express wild-type (AAV2/TM8-WT-htau0N4R-EGFP) or mutant (AAV2/TM8-P301L/S320F-htau0N4R-EGFP) htau at 2.5 × 10 10 viral genome (VG)s/ml, followed by treatment with either rhHSPB1 (50 ng/ml in 0.1% BSA, R&D Systems, 1580-HS) or vehicle (0.1% BSA in PBS), at 6 DIV and every 48 hours until 12 DIV.

Techniques: Control, Western Blot, Concentration Assay, Griess Assay, Enzyme-linked Immunosorbent Assay, Membrane

( A ) Organotypic brain slices were prepared from postnatal mouse brain, transduced at 0 DIV with AAVs to express hHSPB1 in astrocytes under the GFAP promoter for 20 DIV followed by treatment with TNFα + IL-1α for 24 hours. Created with BioRender.com . ( B ) Transduction of slices with AAV-GFAP-BFP (AAV-GFAP) and AAV-GFAP-hHSPB1:BFP (AAV-GFAP-hHSPB1) shows astrocyte-specific (GFAP + ) expression of BFP and hHSPB1 (note that HSPB1 antibody has some unspecific nuclear staining). ( C ) Western blotting to confirm expression of hHSPB1 and its secretion in brain slices. ( D to F ) Changes in LCN2 were quantified in lysates (E) and in conditioned medium (F) relative to intracellular GAPDH. ( G and H ). A cytokine array measured levels of 38 cytokines in the medium in a membrane-based sandwich immunoassay. The average z scores for each cytokine were represented in the graph (G) or shown individually in the heatmap (H), where cytokines are ranked from high to low fold change of control/AAV-GFAP versus TNFα + IL-1α/AAV-GFAP. Cytokines marked with a green asterisk were significantly decreased in TNFα + IL-1α/AAV-GFAP-hHSPB1 versus TNFα + IL-1α/AAV-GFAP conditions. ( I ) The hippocampus was separated and cultured for 19 days and then pretreated with rhHSPB1 (50 ng/ml) for 24 hours and with either control or TNFα + IL-1α and either vehicle (0.1% BSA) or rhHSPB1 (50 ng/ml) for further 24 hours. ( J ) Levels of LCN2 were detected by immunoblot in slice lysates and quantified relative to GAPDH ( K ). Data are shown as means ± SD. N = 5 [(E) and (F)], N = 3 [(G) and (H)], or N = 6 [(J) and (K)]. Two-way ANOVA with Tukey’s or Sidak’s multiple comparisons test, * P < 0.05, ** P < 0.01, *** P < 0.001, ****P < 0.0001.

Journal: Science Advances

Article Title: Reactive astrocytes secrete the chaperone HSPB1 to mediate neuroprotection

doi: 10.1126/sciadv.adk9884

Figure Lengend Snippet: ( A ) Organotypic brain slices were prepared from postnatal mouse brain, transduced at 0 DIV with AAVs to express hHSPB1 in astrocytes under the GFAP promoter for 20 DIV followed by treatment with TNFα + IL-1α for 24 hours. Created with BioRender.com . ( B ) Transduction of slices with AAV-GFAP-BFP (AAV-GFAP) and AAV-GFAP-hHSPB1:BFP (AAV-GFAP-hHSPB1) shows astrocyte-specific (GFAP + ) expression of BFP and hHSPB1 (note that HSPB1 antibody has some unspecific nuclear staining). ( C ) Western blotting to confirm expression of hHSPB1 and its secretion in brain slices. ( D to F ) Changes in LCN2 were quantified in lysates (E) and in conditioned medium (F) relative to intracellular GAPDH. ( G and H ). A cytokine array measured levels of 38 cytokines in the medium in a membrane-based sandwich immunoassay. The average z scores for each cytokine were represented in the graph (G) or shown individually in the heatmap (H), where cytokines are ranked from high to low fold change of control/AAV-GFAP versus TNFα + IL-1α/AAV-GFAP. Cytokines marked with a green asterisk were significantly decreased in TNFα + IL-1α/AAV-GFAP-hHSPB1 versus TNFα + IL-1α/AAV-GFAP conditions. ( I ) The hippocampus was separated and cultured for 19 days and then pretreated with rhHSPB1 (50 ng/ml) for 24 hours and with either control or TNFα + IL-1α and either vehicle (0.1% BSA) or rhHSPB1 (50 ng/ml) for further 24 hours. ( J ) Levels of LCN2 were detected by immunoblot in slice lysates and quantified relative to GAPDH ( K ). Data are shown as means ± SD. N = 5 [(E) and (F)], N = 3 [(G) and (H)], or N = 6 [(J) and (K)]. Two-way ANOVA with Tukey’s or Sidak’s multiple comparisons test, * P < 0.05, ** P < 0.01, *** P < 0.001, ****P < 0.0001.

Article Snippet: Neurons at 6 DIV were transduced with AAVs to express wild-type (AAV2/TM8-WT-htau0N4R-EGFP) or mutant (AAV2/TM8-P301L/S320F-htau0N4R-EGFP) htau at 2.5 × 10 10 viral genome (VG)s/ml, followed by treatment with either rhHSPB1 (50 ng/ml in 0.1% BSA, R&D Systems, 1580-HS) or vehicle (0.1% BSA in PBS), at 6 DIV and every 48 hours until 12 DIV.

Techniques: Transduction, Expressing, Staining, Western Blot, Membrane, Control, Cell Culture

( A ) Primary mouse neurons were treated with rhHSPB1 (10 ng/ml) or vehicle (0.1% BSA) every 3 days from 3 DIV, fixed on 14 DIV, and stained for MAP2. ( B to G ) High-content confocal microscopy was used to determine changes in the number of segments (B), end points (C), primary branching points (D), secondary branching points (E), root points (F) per neuron, and the total length of all neurites for each neuron (G) ( N = 6). ( H ) Neurons were treated with conditioned medium from control or TNFα + IL-1α–treated astrocytes at 10 and 12 DIV, together with rhHSPB1 (50 ng/ml) or vehicle (0.1% BSA), and the medium was collected at 13 DIV. In parallel, neurons were treated with equivalent concentrations of TNFα + IL-1α. Cellular toxicity was determined by measuring LDH levels in neuron-conditioned medium ( N = 5). ( I ) Neurons were transduced at 6 DIV with AAVs to express WT-htau-EGFP or mutant P301L/S320F-htau-EGFP and treated with either vehicle (0.1% BSA) or rhHSPB1 (50 ng/ml) every 2 days and fixed at 12 DIV. Created with BioRender.com . ( J ) Representative images of neurons transduced with mutant P301L/S320F-htau-EGFP and treated with vehicle (0.1% BSA) or rhHSPB1 (50 ng/ml). ( K ) Graph shows the percentage of EGFP-positive neurons that show mutant htau aggregates. N = 6 with >1500 cells counted per experiment. ( L and M ) Total levels of tau were detected using an antibody that recognizes total tau, and the band corresponding to htau tagged to EGFP was quantified relative to β-actin. ( N ) Cellular toxicity was determined by measuring LDH levels in neuron-conditioned medium ( N = 4). Data are shown as means ± SD. Paired Student’s t test [(B) to (G) and (K)]; two-way ANOVA with Tukey’s multiple comparisons test [(H), (M), and (N)], * P < 0.05, ** P < 0.01.

Journal: Science Advances

Article Title: Reactive astrocytes secrete the chaperone HSPB1 to mediate neuroprotection

doi: 10.1126/sciadv.adk9884

Figure Lengend Snippet: ( A ) Primary mouse neurons were treated with rhHSPB1 (10 ng/ml) or vehicle (0.1% BSA) every 3 days from 3 DIV, fixed on 14 DIV, and stained for MAP2. ( B to G ) High-content confocal microscopy was used to determine changes in the number of segments (B), end points (C), primary branching points (D), secondary branching points (E), root points (F) per neuron, and the total length of all neurites for each neuron (G) ( N = 6). ( H ) Neurons were treated with conditioned medium from control or TNFα + IL-1α–treated astrocytes at 10 and 12 DIV, together with rhHSPB1 (50 ng/ml) or vehicle (0.1% BSA), and the medium was collected at 13 DIV. In parallel, neurons were treated with equivalent concentrations of TNFα + IL-1α. Cellular toxicity was determined by measuring LDH levels in neuron-conditioned medium ( N = 5). ( I ) Neurons were transduced at 6 DIV with AAVs to express WT-htau-EGFP or mutant P301L/S320F-htau-EGFP and treated with either vehicle (0.1% BSA) or rhHSPB1 (50 ng/ml) every 2 days and fixed at 12 DIV. Created with BioRender.com . ( J ) Representative images of neurons transduced with mutant P301L/S320F-htau-EGFP and treated with vehicle (0.1% BSA) or rhHSPB1 (50 ng/ml). ( K ) Graph shows the percentage of EGFP-positive neurons that show mutant htau aggregates. N = 6 with >1500 cells counted per experiment. ( L and M ) Total levels of tau were detected using an antibody that recognizes total tau, and the band corresponding to htau tagged to EGFP was quantified relative to β-actin. ( N ) Cellular toxicity was determined by measuring LDH levels in neuron-conditioned medium ( N = 4). Data are shown as means ± SD. Paired Student’s t test [(B) to (G) and (K)]; two-way ANOVA with Tukey’s multiple comparisons test [(H), (M), and (N)], * P < 0.05, ** P < 0.01.

Article Snippet: Neurons at 6 DIV were transduced with AAVs to express wild-type (AAV2/TM8-WT-htau0N4R-EGFP) or mutant (AAV2/TM8-P301L/S320F-htau0N4R-EGFP) htau at 2.5 × 10 10 viral genome (VG)s/ml, followed by treatment with either rhHSPB1 (50 ng/ml in 0.1% BSA, R&D Systems, 1580-HS) or vehicle (0.1% BSA in PBS), at 6 DIV and every 48 hours until 12 DIV.

Techniques: Staining, Confocal Microscopy, Control, Mutagenesis, Transduction

( A ) Organotypic brain slices were transduced with AAVs to express WT-htau-EGFP or mutant P301L/S320F-htau-EGFP and (i) simultaneously transduced with AAV-GFAP or AAV-GFAP-hHSPB1 or (ii) treated with either vehicle (0.1% BSA) or rhHSPB1 (50 ng/ml) from 14 DIV and then every 2 to 3 days up to 28 DIV. Created with BioRender.com . ( B ) Representative images of slices with AAV-WT-htau-EGFP or AAV-P301L/S320F-htau-EGFP. ( C to E ) Total lysates from AAV-GFAP-HSPB1 or control transduced slices were subjected to sarkosyl extraction to isolate the low-speed supernatant (total tau), high-speed supernatant (soluble tau), or sarkosyl-insoluble pellet (insoluble tau). Tau (D) or Ser 396 /Ser 404 phosphorylated tau (PHF-1) (E) were quantified in the whole lane (between 15 and 250 kDa) to include both mouse (mtau) and htau and any modified tau, and quantified relative to β-actin or total tau, as indicated. ( F to H ) Lysates from brain slices treated with rhHSPB1 or vehicle were subjected to sarkosyl extraction, and levels of tau (G) or PHF-1 (H) were quantified as above. ( I ) Intracellular LCN2 was detected in lysates from slices transduced with AAV-WT-htau-EGFP or AAV-P301L/S320F-htau-EGFP and AAV-GFAP-HSPB1 or control at 0 DIV and collected at 28 DIV. Levels of LCN2 relative to ALDH1L1 are shown ( J ). Data are shown as means± SD. N = 6 [(D) and (E)], N = 5 [(G) and (H)], or N = 3 (J). Two-way ANOVA with Tukey’s multiple comparisons test [(D), (E), (G), (H), and (J)], * P < 0.05, ** P < 0.01, *** P < 0.001, **** P < 0.0001. ( K ) Working model showing that reactive astrocytes that surround amyloid plaques or that are exposed to proinflammatory cytokines from activated microglia secrete HSPB1 into the extracellular space. Secreted HSPB1 can have autocrine functions by ameliorating the reactive inflammatory response in astrocytes, as well as paracrine functions by reducing tau inclusion pathology and promoting neuronal health in adjacent neurons. Created with BioRender.com .

Journal: Science Advances

Article Title: Reactive astrocytes secrete the chaperone HSPB1 to mediate neuroprotection

doi: 10.1126/sciadv.adk9884

Figure Lengend Snippet: ( A ) Organotypic brain slices were transduced with AAVs to express WT-htau-EGFP or mutant P301L/S320F-htau-EGFP and (i) simultaneously transduced with AAV-GFAP or AAV-GFAP-hHSPB1 or (ii) treated with either vehicle (0.1% BSA) or rhHSPB1 (50 ng/ml) from 14 DIV and then every 2 to 3 days up to 28 DIV. Created with BioRender.com . ( B ) Representative images of slices with AAV-WT-htau-EGFP or AAV-P301L/S320F-htau-EGFP. ( C to E ) Total lysates from AAV-GFAP-HSPB1 or control transduced slices were subjected to sarkosyl extraction to isolate the low-speed supernatant (total tau), high-speed supernatant (soluble tau), or sarkosyl-insoluble pellet (insoluble tau). Tau (D) or Ser 396 /Ser 404 phosphorylated tau (PHF-1) (E) were quantified in the whole lane (between 15 and 250 kDa) to include both mouse (mtau) and htau and any modified tau, and quantified relative to β-actin or total tau, as indicated. ( F to H ) Lysates from brain slices treated with rhHSPB1 or vehicle were subjected to sarkosyl extraction, and levels of tau (G) or PHF-1 (H) were quantified as above. ( I ) Intracellular LCN2 was detected in lysates from slices transduced with AAV-WT-htau-EGFP or AAV-P301L/S320F-htau-EGFP and AAV-GFAP-HSPB1 or control at 0 DIV and collected at 28 DIV. Levels of LCN2 relative to ALDH1L1 are shown ( J ). Data are shown as means± SD. N = 6 [(D) and (E)], N = 5 [(G) and (H)], or N = 3 (J). Two-way ANOVA with Tukey’s multiple comparisons test [(D), (E), (G), (H), and (J)], * P < 0.05, ** P < 0.01, *** P < 0.001, **** P < 0.0001. ( K ) Working model showing that reactive astrocytes that surround amyloid plaques or that are exposed to proinflammatory cytokines from activated microglia secrete HSPB1 into the extracellular space. Secreted HSPB1 can have autocrine functions by ameliorating the reactive inflammatory response in astrocytes, as well as paracrine functions by reducing tau inclusion pathology and promoting neuronal health in adjacent neurons. Created with BioRender.com .

Article Snippet: Neurons at 6 DIV were transduced with AAVs to express wild-type (AAV2/TM8-WT-htau0N4R-EGFP) or mutant (AAV2/TM8-P301L/S320F-htau0N4R-EGFP) htau at 2.5 × 10 10 viral genome (VG)s/ml, followed by treatment with either rhHSPB1 (50 ng/ml in 0.1% BSA, R&D Systems, 1580-HS) or vehicle (0.1% BSA in PBS), at 6 DIV and every 48 hours until 12 DIV.

Techniques: Transduction, Mutagenesis, Control, Extraction, Modification