Department of Bioengineering, Faculty of Engineering, Imperial College London, South Kensington Campus, London SW7 2AZ, UK.
Department of Bioengineering, Faculty of Engineering, Imperial College London, South Kensington Campus, London SW7 2AZ, UK
Philos Trans R Soc Lond B Biol Sci. 2018 Sep 24;373(1759):20170317. doi: 10.1098/rstb.2017.0317.
Abnormalities in joint shape are increasingly considered a critical risk factor for developing osteoarthritis in life. It has been shown that mechanical forces during prenatal development, particularly those due to fetal movements, play a fundamental role in joint morphogenesis. However, how mechanical stimuli are sensed or transduced in developing joint tissues is unclear. Stretch-activated and voltage-gated calcium ion channels have been shown to be involved in the mechanoregulation of chondrocytes In this study, we analyse, for the first time, how blocking these ion channels influences the effects of mechanical loading on chick joint morphogenesis. Using culture of embryonic chick hindlimb explants in a mechanostimulation bioreactor, we block stretch-activated and voltage-gated ion channels using, respectively, gadolinium chloride and nifedipine. We find that the administration of high doses of either drug largely removed the effects of mechanical stimulation on growth and shape development , while neither drug had any effect in static cultures. This study demonstrates that, during joint morphogenesis, mechanical cues are transduced-at least in part-through mechanosensitive calcium ion channels, advancing our understanding of cartilage development and mechanotransduction.This article is part of the Theo Murphy meeting issue 'Mechanics of development'.
关节形状异常越来越被认为是一生中发生骨关节炎的一个关键危险因素。已经表明,产前发育过程中的机械力,特别是胎儿运动引起的机械力,在关节形态发生中起着根本作用。然而,在发育中的关节组织中,机械刺激是如何被感知或转导的还不清楚。已经表明,拉伸激活和电压门控钙离子通道参与了软骨细胞的机械调节。在这项研究中,我们首次分析了阻断这些离子通道如何影响机械加载对鸡关节形态发生的影响。我们使用机械刺激生物反应器培养胚胎鸡后肢外植体,分别使用氯化钆和硝苯地平阻断拉伸激活和电压门控离子通道。我们发现,高剂量的两种药物中的任何一种都极大地消除了机械刺激对生长和形状发育的影响,而在静态培养中,两种药物都没有任何作用。这项研究表明,在关节形态发生过程中,机械线索至少部分地通过机械敏感钙离子通道转导,这推进了我们对软骨发育和力转导的理解。本文是 Theo Murphy 会议主题“发育力学”的一部分。