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成骨细胞钙信号转导——机械负荷向机械生物学转化的潜在媒介。

Osteocyte calcium signaling - A potential translator of mechanical load to mechanobiology.

机构信息

Meinig School of Biomedical Engineering, Cornell University, Ithaca, NY, United States of America.

出版信息

Bone. 2021 Dec;153:116136. doi: 10.1016/j.bone.2021.116136. Epub 2021 Jul 30.

Abstract

Osteocytes are embedded dendritic bone cells; by virtue of their position in bone tissue, ability to coordinate bone building osteoblasts and resorbing osteoclasts, and sensitivity to tissue level mechanical loading, they serve as the resident bone mechanosensor. The mechanisms osteocytes use to change mechanical loading into biological signals that drive tissue level changes has been well studied over the last 30 years, however the ways loading parameters are encoded at the cellular level are still not fully understood. Calcium signaling is a first messenger signal exhibited by osteocytes in response to mechanical forces. A body of work interrogating the mechanisms of osteocyte calcium signaling exists and is presently expanding, presenting the opportunity to better understand the relationship between calcium signaling characteristics and tuned osteocyte responses to tissue level strain features (e.g. magnitude, duration, frequency). This review covers the history of osteocyte load induced calcium signaling and highlights potential cellular mechanisms used by osteocytes to turn details about loading parameters into biological events.

摘要

成骨细胞是嵌入在骨组织中的树突状骨细胞;由于其在骨组织中的位置、协调骨形成成骨细胞和骨吸收破骨细胞的能力,以及对组织水平机械加载的敏感性,它们充当驻留的骨机械感受器。在过去的 30 年里,人们对成骨细胞将机械加载转化为驱动组织水平变化的生物信号的机制进行了深入研究,然而,在细胞水平上加载参数是如何编码的仍然不完全清楚。钙信号是成骨细胞对机械力的反应的第一信使信号。目前,大量研究正在探讨成骨细胞钙信号的机制,这为更好地理解钙信号特征与成骨细胞对组织水平应变特征(例如幅度、持续时间、频率)的响应之间的关系提供了机会。本综述回顾了成骨细胞负载诱导钙信号的历史,并强调了成骨细胞将加载参数的详细信息转化为生物事件的潜在细胞机制。

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