钙
生物学中的钙
细胞内
兰尼定受体
细胞外
化学
细胞生物学
三磷酸肌醇
成骨细胞
钙代谢
生物物理学
电压依赖性钙通道
肌醇
钙信号传导
受体
内分泌学
生物化学
生物
体外
有机化学
作者
Zhongyang Sun,Ying Liu,Hua Zhou,Min Cai,Jing Liu,Shanshan Gao,Junsheng Yang,Liangcheng Tong,Jianling Wang,Sheng Zhou,Zebing Hu,Yixuan Wang,Ke Wang,Lijun Zhang,Han Wang,Lianchang Zhang,Fei Shi,Xinsheng Cao,Zhang Shu,Yongzhang Ji,Jianning Zhao
摘要
Abstract Calcium homeostasis in osteoblasts plays fundamental roles in the physiology and pathology of bone tissue. Various types of mechanical stimuli promote osteogenesis and increase bone formation elicit increases in intracellular‐free calcium concentration in osteoblasts. However, whether microgravity, a condition of mechanical unloading, exerts an influence on intracellular‐free calcium concentration in osteoblasts or what mechanisms may underlie such an effect are unclear. Herein, we show that simulated microgravity reduces intracellular‐free calcium concentration in primary mouse osteoblasts. In addition, simulated microgravity substantially suppresses the activities of L‐type voltage‐sensitive calcium channels, which selectively allow calcium to cross the plasma membrane from the extracellular space. Moreover, the functional expression of ryanodine receptors and inositol 1,4,5‐trisphosphate receptors, which mediate the release of calcium from intracellular storage, decreased under simulated microgravity conditions. These results suggest that simulated microgravity substantially reduces intracellular‐free calcium concentration through inhibition of calcium channels in primary mouse osteoblasts. Our study may provide a novel mechanism for microgravity‐induced detrimental effects in osteoblasts, offering a new avenue to further investigate bone loss induced by mechanical unloading.
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