Osteocyte Egln1/Phd2 links oxygen sensing and biomineralization via FGF23
Megan L.Noonan Erica L.Clinkenbeard Guanglong Jiang Sheng Liu Steve Stegen Geert Carmeliet William R.Thompson Yunlong Liu Jun Wan Kenneth E.White Pu Ni Emmanuel Solis Yamil G.Marambio Rafiou Agoro Xiaona Chu Yue Wang Hongyu Gao Xiaoling Xuei
Osteocyte Egln1/Phd2 links oxygen sensing and biomineralization via FGF23
Osteocyte Egln1/Phd2 links oxygen sensing and biomineralization via FGF23
摘要
引用本文复制引用
Megan L.Noonan,Erica L.Clinkenbeard,Guanglong Jiang,Sheng Liu,Steve Stegen,Geert Carmeliet,William R.Thompson,Yunlong Liu,Jun Wan,Kenneth E.White,Pu Ni,Emmanuel Solis,Yamil G.Marambio,Rafiou Agoro,Xiaona Chu,Yue Wang,Hongyu Gao,Xiaoling Xuei..Osteocyte Egln1/Phd2 links oxygen sensing and biomineralization via FGF23[J].骨研究(英文版),2023,11(1):178-192,15.基金项目
The authors would like to acknowledge NIH grants F31-DK122679 and T32-HL007910(MLN) (MLN)
a postdoctoral research grant from the Research Foundation–Flanders(FWO/12H5917N)(SS) (FWO/12H5917N)
R01-AR074473(WRT) (WRT)
R21-AR059278,R01-DK112958,and R01-HL145528(KEW) (KEW)
and The David Weaver Professorship(KEW).The authors thank the members of the Indiana University Melvin and Bren Simon Cancer Center Flow Cytometry Resource Facility(FCRF)for their outstanding technical support.The Indiana University Melvin and Bren Simon Comprehensive Cancer Center FCRF is funded in part by NIH,National Cancer Institute(NCI)grant P30 CA082709 and National Institute of Diabetes and Digestive and Kidney Diseases(NIDDK)grant U54 DK106846.The FCRF is supported in part by NIH instrumentation grant 1S10D012270.We would also like to acknowledge the assistance and support provided by the Center for Medical Genomics and the Bioinformatics Core at IUSM. (KEW)