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Decreased extracellular pH inhibits osteogenesis through proton-sensing GPR4-mediated suppression of yes-associated protein.


ABSTRACT: The pH of extracellular fluids is a basic property of the tissue microenvironment and is normally maintained at 7.40?±?0.05 in humans. Many pathological circumstances, such as ischemia, inflammation, and tumorigenesis, result in the reduction of extracellular pH in the affected tissues. In this study, we reported that the osteogenic differentiation of BMSCs was significantly inhibited by decreases in the extracellular pH. Moreover, we demonstrated that proton-sensing GPR4 signaling mediated the proton-induced inhibitory effects on the osteogenesis of BMSCs. Additionally, we found that YAP was the downstream effector of GPR4 signaling. Our findings revealed that the extracellular pH modulates the osteogenic responses of BMSCs by regulating the proton-sensing GPR4-YAP pathway.

SUBMITTER: Tao SC 

PROVIDER: S-EPMC4891712 | biostudies-literature | 2016 Jun

REPOSITORIES: biostudies-literature

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Decreased extracellular pH inhibits osteogenesis through proton-sensing GPR4-mediated suppression of yes-associated protein.

Tao Shi-Cong SC   Gao You-Shui YS   Zhu Hong-Yi HY   Yin Jun-Hui JH   Chen Yi-Xuan YX   Zhang Yue-Lei YL   Guo Shang-Chun SC   Zhang Chang-Qing CQ  

Scientific reports 20160603


The pH of extracellular fluids is a basic property of the tissue microenvironment and is normally maintained at 7.40 ± 0.05 in humans. Many pathological circumstances, such as ischemia, inflammation, and tumorigenesis, result in the reduction of extracellular pH in the affected tissues. In this study, we reported that the osteogenic differentiation of BMSCs was significantly inhibited by decreases in the extracellular pH. Moreover, we demonstrated that proton-sensing GPR4 signaling mediated the  ...[more]

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