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BioResource International Inc osteoblast-specific memo1 knock-out mouse model
Primers used for qPCR.
Osteoblast Specific Memo1 Knock Out Mouse Model, supplied by BioResource International 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/osteoblast-specific+memo1+knock-out+mouse+model/pmc10040316-175-4-67?v=BioResource+International+Inc
Average 90 stars, based on 1 article reviews
osteoblast-specific memo1 knock-out mouse model - by Bioz Stars, 2026-07
90/100 stars

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1) Product Images from "FGFR regulator Memo1 is dispensable for FGF23 expression by osteoblasts during folic acid‐driven kidney injury"

Article Title: FGFR regulator Memo1 is dispensable for FGF23 expression by osteoblasts during folic acid‐driven kidney injury

Journal: Physiological Reports

doi: 10.14814/phy2.15650

Primers used for qPCR.
Figure Legend Snippet: Primers used for qPCR.

Techniques Used:

Validation of Memo obKO mouse model. Femoral Memo1 gene expression (a) and protein abundance (b) were blunted in Memo obKO, whereas Cre expression was detectable (c) in marrow‐free femur of Memo obKO. Memo1 expression was conserved in bone marrow (d), kidney (e) and liver (f) of Memo obKO animals relative to controls. Statistical analyses by Mann–Whitney U test. *, p < 0.05; ns, not significant. N of animals is indicated by the number of scatters. Animals were aged 9 weeks and both sexes at equal ratios in each group.
Figure Legend Snippet: Validation of Memo obKO mouse model. Femoral Memo1 gene expression (a) and protein abundance (b) were blunted in Memo obKO, whereas Cre expression was detectable (c) in marrow‐free femur of Memo obKO. Memo1 expression was conserved in bone marrow (d), kidney (e) and liver (f) of Memo obKO animals relative to controls. Statistical analyses by Mann–Whitney U test. *, p < 0.05; ns, not significant. N of animals is indicated by the number of scatters. Animals were aged 9 weeks and both sexes at equal ratios in each group.

Techniques Used: Biomarker Discovery, Gene Expression, Quantitative Proteomics, Expressing, MANN-WHITNEY

Three‐dimensional reconstructions of bone sites investigated by micro‐CT. Structure was not affected by loss of Memo1 in osteoblasts at any site, and 1 representative image per anatomical site and genotype is shown.
Figure Legend Snippet: Three‐dimensional reconstructions of bone sites investigated by micro‐CT. Structure was not affected by loss of Memo1 in osteoblasts at any site, and 1 representative image per anatomical site and genotype is shown.

Techniques Used: Micro-CT

Femoral μCT analysis of  Memo1  obKO females ( n = 4).
Figure Legend Snippet: Femoral μCT analysis of Memo1 obKO females ( n = 4).

Techniques Used: Micro-CT, Control

Tibia μCT analysis of  Memo1  obKO males ( n = 4).
Figure Legend Snippet: Tibia μCT analysis of Memo1 obKO males ( n = 4).

Techniques Used: Micro-CT, Control

Tibia μCT analysis of  Memo1  obKO females ( n = 4).
Figure Legend Snippet: Tibia μCT analysis of Memo1 obKO females ( n = 4).

Techniques Used: Micro-CT, Control

Vertebral μCT analysis of  Memo1  obKO males ( n = 4).
Figure Legend Snippet: Vertebral μCT analysis of Memo1 obKO males ( n = 4).

Techniques Used: Micro-CT, Control

Vertebral μCT analysis of  Memo1  obKO females ( n = 4).
Figure Legend Snippet: Vertebral μCT analysis of Memo1 obKO females ( n = 4).

Techniques Used: Micro-CT, Control

Serum parameters of  Memo1  obKO ( n = 4 per genotype and sex).
Figure Legend Snippet: Serum parameters of Memo1 obKO ( n = 4 per genotype and sex).

Techniques Used: Control

Femoral μCT analysis of  Memo1  obKO males ( n = 4).
Figure Legend Snippet: Femoral μCT analysis of Memo1 obKO males ( n = 4).

Techniques Used: Micro-CT, Control



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BioResource International Inc osteoblast-specific memo1 knock-out mouse model
Primers used for qPCR.
Osteoblast Specific Memo1 Knock Out Mouse Model, supplied by BioResource International 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/osteoblast-specific+memo1+knock-out+mouse+model/pmc10040316-175-4-67?v=BioResource+International+Inc
Average 90 stars, based on 1 article reviews
osteoblast-specific memo1 knock-out mouse model - by Bioz Stars, 2026-07
90/100 stars
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Primers used for qPCR.

Journal: Physiological Reports

Article Title: FGFR regulator Memo1 is dispensable for FGF23 expression by osteoblasts during folic acid‐driven kidney injury

doi: 10.14814/phy2.15650

Figure Lengend Snippet: Primers used for qPCR.

Article Snippet: An osteoblast‐specific Memo1 knock‐out (Memo1 obKO) mouse model was established by crossing mice floxed for exon two of the Memo1 gene (Haenzi et al., ) backcrossed to the C57BL/6J background over at least 10 generations with Col1a1 Cre transgenic mice carrying a Cre recombinase under the control of the 2.3‐kb proximal fragment of the α1(I)‐collagen promoter (Dacquin et al., ; Haenzi et al., ) obtained through Riken BioResource Research Center (Ibaraki, Japan).

Techniques:

Validation of Memo obKO mouse model. Femoral Memo1 gene expression (a) and protein abundance (b) were blunted in Memo obKO, whereas Cre expression was detectable (c) in marrow‐free femur of Memo obKO. Memo1 expression was conserved in bone marrow (d), kidney (e) and liver (f) of Memo obKO animals relative to controls. Statistical analyses by Mann–Whitney U test. *, p < 0.05; ns, not significant. N of animals is indicated by the number of scatters. Animals were aged 9 weeks and both sexes at equal ratios in each group.

Journal: Physiological Reports

Article Title: FGFR regulator Memo1 is dispensable for FGF23 expression by osteoblasts during folic acid‐driven kidney injury

doi: 10.14814/phy2.15650

Figure Lengend Snippet: Validation of Memo obKO mouse model. Femoral Memo1 gene expression (a) and protein abundance (b) were blunted in Memo obKO, whereas Cre expression was detectable (c) in marrow‐free femur of Memo obKO. Memo1 expression was conserved in bone marrow (d), kidney (e) and liver (f) of Memo obKO animals relative to controls. Statistical analyses by Mann–Whitney U test. *, p < 0.05; ns, not significant. N of animals is indicated by the number of scatters. Animals were aged 9 weeks and both sexes at equal ratios in each group.

Article Snippet: An osteoblast‐specific Memo1 knock‐out (Memo1 obKO) mouse model was established by crossing mice floxed for exon two of the Memo1 gene (Haenzi et al., ) backcrossed to the C57BL/6J background over at least 10 generations with Col1a1 Cre transgenic mice carrying a Cre recombinase under the control of the 2.3‐kb proximal fragment of the α1(I)‐collagen promoter (Dacquin et al., ; Haenzi et al., ) obtained through Riken BioResource Research Center (Ibaraki, Japan).

Techniques: Biomarker Discovery, Gene Expression, Quantitative Proteomics, Expressing, MANN-WHITNEY

Three‐dimensional reconstructions of bone sites investigated by micro‐CT. Structure was not affected by loss of Memo1 in osteoblasts at any site, and 1 representative image per anatomical site and genotype is shown.

Journal: Physiological Reports

Article Title: FGFR regulator Memo1 is dispensable for FGF23 expression by osteoblasts during folic acid‐driven kidney injury

doi: 10.14814/phy2.15650

Figure Lengend Snippet: Three‐dimensional reconstructions of bone sites investigated by micro‐CT. Structure was not affected by loss of Memo1 in osteoblasts at any site, and 1 representative image per anatomical site and genotype is shown.

Article Snippet: An osteoblast‐specific Memo1 knock‐out (Memo1 obKO) mouse model was established by crossing mice floxed for exon two of the Memo1 gene (Haenzi et al., ) backcrossed to the C57BL/6J background over at least 10 generations with Col1a1 Cre transgenic mice carrying a Cre recombinase under the control of the 2.3‐kb proximal fragment of the α1(I)‐collagen promoter (Dacquin et al., ; Haenzi et al., ) obtained through Riken BioResource Research Center (Ibaraki, Japan).

Techniques: Micro-CT

Femoral μCT analysis of  Memo1  obKO females ( n = 4).

Journal: Physiological Reports

Article Title: FGFR regulator Memo1 is dispensable for FGF23 expression by osteoblasts during folic acid‐driven kidney injury

doi: 10.14814/phy2.15650

Figure Lengend Snippet: Femoral μCT analysis of Memo1 obKO females ( n = 4).

Article Snippet: An osteoblast‐specific Memo1 knock‐out (Memo1 obKO) mouse model was established by crossing mice floxed for exon two of the Memo1 gene (Haenzi et al., ) backcrossed to the C57BL/6J background over at least 10 generations with Col1a1 Cre transgenic mice carrying a Cre recombinase under the control of the 2.3‐kb proximal fragment of the α1(I)‐collagen promoter (Dacquin et al., ; Haenzi et al., ) obtained through Riken BioResource Research Center (Ibaraki, Japan).

Techniques: Micro-CT, Control

Tibia μCT analysis of  Memo1  obKO males ( n = 4).

Journal: Physiological Reports

Article Title: FGFR regulator Memo1 is dispensable for FGF23 expression by osteoblasts during folic acid‐driven kidney injury

doi: 10.14814/phy2.15650

Figure Lengend Snippet: Tibia μCT analysis of Memo1 obKO males ( n = 4).

Article Snippet: An osteoblast‐specific Memo1 knock‐out (Memo1 obKO) mouse model was established by crossing mice floxed for exon two of the Memo1 gene (Haenzi et al., ) backcrossed to the C57BL/6J background over at least 10 generations with Col1a1 Cre transgenic mice carrying a Cre recombinase under the control of the 2.3‐kb proximal fragment of the α1(I)‐collagen promoter (Dacquin et al., ; Haenzi et al., ) obtained through Riken BioResource Research Center (Ibaraki, Japan).

Techniques: Micro-CT, Control

Tibia μCT analysis of  Memo1  obKO females ( n = 4).

Journal: Physiological Reports

Article Title: FGFR regulator Memo1 is dispensable for FGF23 expression by osteoblasts during folic acid‐driven kidney injury

doi: 10.14814/phy2.15650

Figure Lengend Snippet: Tibia μCT analysis of Memo1 obKO females ( n = 4).

Article Snippet: An osteoblast‐specific Memo1 knock‐out (Memo1 obKO) mouse model was established by crossing mice floxed for exon two of the Memo1 gene (Haenzi et al., ) backcrossed to the C57BL/6J background over at least 10 generations with Col1a1 Cre transgenic mice carrying a Cre recombinase under the control of the 2.3‐kb proximal fragment of the α1(I)‐collagen promoter (Dacquin et al., ; Haenzi et al., ) obtained through Riken BioResource Research Center (Ibaraki, Japan).

Techniques: Micro-CT, Control

Vertebral μCT analysis of  Memo1  obKO males ( n = 4).

Journal: Physiological Reports

Article Title: FGFR regulator Memo1 is dispensable for FGF23 expression by osteoblasts during folic acid‐driven kidney injury

doi: 10.14814/phy2.15650

Figure Lengend Snippet: Vertebral μCT analysis of Memo1 obKO males ( n = 4).

Article Snippet: An osteoblast‐specific Memo1 knock‐out (Memo1 obKO) mouse model was established by crossing mice floxed for exon two of the Memo1 gene (Haenzi et al., ) backcrossed to the C57BL/6J background over at least 10 generations with Col1a1 Cre transgenic mice carrying a Cre recombinase under the control of the 2.3‐kb proximal fragment of the α1(I)‐collagen promoter (Dacquin et al., ; Haenzi et al., ) obtained through Riken BioResource Research Center (Ibaraki, Japan).

Techniques: Micro-CT, Control

Vertebral μCT analysis of  Memo1  obKO females ( n = 4).

Journal: Physiological Reports

Article Title: FGFR regulator Memo1 is dispensable for FGF23 expression by osteoblasts during folic acid‐driven kidney injury

doi: 10.14814/phy2.15650

Figure Lengend Snippet: Vertebral μCT analysis of Memo1 obKO females ( n = 4).

Article Snippet: An osteoblast‐specific Memo1 knock‐out (Memo1 obKO) mouse model was established by crossing mice floxed for exon two of the Memo1 gene (Haenzi et al., ) backcrossed to the C57BL/6J background over at least 10 generations with Col1a1 Cre transgenic mice carrying a Cre recombinase under the control of the 2.3‐kb proximal fragment of the α1(I)‐collagen promoter (Dacquin et al., ; Haenzi et al., ) obtained through Riken BioResource Research Center (Ibaraki, Japan).

Techniques: Micro-CT, Control

Serum parameters of  Memo1  obKO ( n = 4 per genotype and sex).

Journal: Physiological Reports

Article Title: FGFR regulator Memo1 is dispensable for FGF23 expression by osteoblasts during folic acid‐driven kidney injury

doi: 10.14814/phy2.15650

Figure Lengend Snippet: Serum parameters of Memo1 obKO ( n = 4 per genotype and sex).

Article Snippet: An osteoblast‐specific Memo1 knock‐out (Memo1 obKO) mouse model was established by crossing mice floxed for exon two of the Memo1 gene (Haenzi et al., ) backcrossed to the C57BL/6J background over at least 10 generations with Col1a1 Cre transgenic mice carrying a Cre recombinase under the control of the 2.3‐kb proximal fragment of the α1(I)‐collagen promoter (Dacquin et al., ; Haenzi et al., ) obtained through Riken BioResource Research Center (Ibaraki, Japan).

Techniques: Control

Femoral μCT analysis of  Memo1  obKO males ( n = 4).

Journal: Physiological Reports

Article Title: FGFR regulator Memo1 is dispensable for FGF23 expression by osteoblasts during folic acid‐driven kidney injury

doi: 10.14814/phy2.15650

Figure Lengend Snippet: Femoral μCT analysis of Memo1 obKO males ( n = 4).

Article Snippet: An osteoblast‐specific Memo1 knock‐out (Memo1 obKO) mouse model was established by crossing mice floxed for exon two of the Memo1 gene (Haenzi et al., ) backcrossed to the C57BL/6J background over at least 10 generations with Col1a1 Cre transgenic mice carrying a Cre recombinase under the control of the 2.3‐kb proximal fragment of the α1(I)‐collagen promoter (Dacquin et al., ; Haenzi et al., ) obtained through Riken BioResource Research Center (Ibaraki, Japan).

Techniques: Micro-CT, Control