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小鼠椎间盘瞬时受体电位香草酸亚型4(TRPV4)的时空及功能特性

Spatiotemporal and functional characterisation of transient receptor potential vanilloid 4 (TRPV4) in the murine intervertebral disc.

作者信息

Kim M Km, Ramachandran R, Séguin C A

机构信息

Department of Physiology and Pharmacology, Schulich School of Medicine and Dentistry, The University of Western Ontario, London, Ontario, N6A 5C1,

出版信息

Eur Cell Mater. 2021 Feb 23;41:194-203. doi: 10.22203/eCM.v041a14.

Abstract

The molecular regulators of mechano-transduction in intervertebral disc (IVD) cells are not well understood. The aim of the present study was to characterise the expression and function of the mechano-sensitive ion channel TRPV4 in the IVD. A novel transgenic reporter mouse, in which the endogenous Trpv4 locus drove the expression of LacZ, was used to localise Trpv4 expression at specific stages of spine development [embryonic day (E) 8.5, 12.5, 17.5, postnatal day 1] and time points following skeletal maturity (2.5, 6, 9 and 12 months). The TRPV4-specific agonist GSK1016790A and antagonist GSK2193874 were used to assess the functional response of annulus fibrosus (AF) cells using epifluorescence imaging with Ca2+-sensitive Fura-2 dye and F-actin staining. The effects of TRPV4 agonism and antagonism in mechanically stimulated AF cells were quantified by gene expression analysis. Trpv4 expression was specific to the developing notochord and intervertebral mesenchyme at E12.5. At 2.5, 6 and 9 months, Trpv4 expression was detected in the nucleus pulposus, inner AF, cartilage endplate and vertebral growth plate. AF cells treated with GSK1016790A demonstrated heterogeneity in TRPV4-dependent Ca2+ responses (no response, calcium oscillation or sustained response). TRPV4-induced Ca2+ signalling was associated with Rho/ROCK-dependent actin cytoskeleton remodelling and stress-fibre formation. In AF cells, cyclic-tensile-strain-induced changes in Acan and Prg4 expression were mediated by TRPV4 channel activation. These data establish TRPV4 as an important mechano- sensor regulating IVD mechano-biology.

摘要

椎间盘(IVD)细胞中机械转导的分子调节因子尚未完全明确。本研究的目的是表征机械敏感离子通道TRPV4在IVD中的表达和功能。一种新型转基因报告小鼠被用于定位Trpv4在脊柱发育特定阶段(胚胎期第8.5天、12.5天、17.5天、出生后第1天)以及骨骼成熟后的时间点(2.5个月、6个月、9个月和12个月)的表达,该小鼠内源性Trpv4基因座驱动LacZ的表达。使用TRPV4特异性激动剂GSK1016790A和拮抗剂GSK2193874,通过对Ca2+敏感的Fura-2染料的落射荧光成像和F-肌动蛋白染色来评估纤维环(AF)细胞的功能反应。通过基因表达分析对机械刺激的AF细胞中TRPV4激动和拮抗的作用进行定量。在胚胎期第12.5天,Trpv4表达特异性定位于发育中的脊索和椎间间充质。在2.5个月、6个月和9个月时,在髓核、AF内层、软骨终板和椎体生长板中检测到Trpv4表达。用GSK1016790A处理的AF细胞在TRPV4依赖性Ca2+反应中表现出异质性(无反应、钙振荡或持续反应)。TRPV4诱导的Ca2+信号传导与Rho/ROCK依赖性肌动蛋白细胞骨架重塑和应力纤维形成有关。在AF细胞中,环拉伸应变诱导的Acan和Prg4表达变化由TRPV4通道激活介导。这些数据确定TRPV4是调节IVD机械生物学的重要机械传感器。

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