Department of Mechanical Engineering, University of Sheffield, Sheffield, UK.
INSIGNEO Institute for in silico Medicine, University of Sheffield, Sheffield, UK.
Curr Osteoporos Rep. 2023 Dec;21(6):719-730. doi: 10.1007/s11914-023-00819-1. Epub 2023 Sep 8.
The purpose of this review is to provide a background on osteocytes and the primary cilium, discussing the role it plays in osteocyte mechanosensing.
Osteocytes are thought to be the primary mechanosensing cells in bone tissue, regulating bone adaptation in response to exercise, with the primary cilium suggested to be a key mechanosensing mechanism in bone. More recent work has suggested that, rather than being direct mechanosensors themselves, primary cilia in bone may instead form a key chemo-signalling nexus for processing mechanoregulated signalling pathways. Recent evidence suggests that pharmacologically induced lengthening of the primary cilium in osteocytes may potentiate greater mechanotransduction, rather than greater mechanosensing. While more research is required to delineate the specific osteocyte mechanobiological molecular mechanisms governed by the primary cilium, it is clear from the literature that the primary cilium has significant potential as a therapeutic target to treat mechanoregulated bone diseases, such as osteoporosis.
本文旨在介绍骨细胞和初级纤毛的背景知识,讨论其在骨细胞机械感知中的作用。
骨细胞被认为是骨组织中主要的机械感受细胞,调节骨骼对运动的适应性,初级纤毛被认为是骨机械感知的关键机制。最近的研究表明,初级纤毛在骨中可能不是直接的机械感受器,而是形成处理机械调节信号通路的关键化学信号枢纽。最近的证据表明,药物诱导的骨细胞初级纤毛延长可能增强更大的机械转导,而不是更强的机械感知。虽然需要更多的研究来描绘由初级纤毛控制的特定骨细胞机械生物学分子机制,但从文献中可以清楚地看出,初级纤毛作为治疗机械调节性骨疾病(如骨质疏松症)的治疗靶点具有很大的潜力。