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通过转化生长因子β信号传导实现牛关节软骨表面区蛋白的机械转导

Mechanotransduction of bovine articular cartilage superficial zone protein by transforming growth factor beta signaling.

作者信息

Neu Corey P, Khalafi Afshin, Komvopoulos Kyriakos, Schmid Thomas M, Reddi A Hari

机构信息

Center for Tissue Regeneration and Repair, University of California, Davis, Medical Center, Sacramento, CA 95817, USA.

出版信息

Arthritis Rheum. 2007 Nov;56(11):3706-14. doi: 10.1002/art.23024.

Abstract

OBJECTIVE

Mechanical signals are key determinants in tissue morphogenesis, maintenance, and restoration strategies in regenerative medicine, although molecular mechanisms of mechanotransduction remain to be elucidated. This study was undertaken to investigate the mechanotransduction process of expression of superficial zone protein (SZP), a critical joint lubricant.

METHODS

Regional expression of SZP was first quantified in cartilage obtained from the femoral condyles of immature bovines, using immunoblotting, and visualized by immunohistochemistry. Contact pressure mapping in whole joints was accomplished using pressure-sensitive film and a load application system for joint testing. Friction measurements on cartilage plugs were acquired under boundary lubrication conditions using a pin-on-disk tribometer modified for reciprocating sliding. Direct mechanical stimulation by shear loading of articular cartilage explants was performed with and without inhibition of transforming growth factor beta (TGFbeta) signaling, and SZP content in media was quantified by enzyme-linked immunosorbent assay.

RESULTS

An unexpected pattern of SZP localization in knee cartilage was initially identified, with anterior regions exhibiting high levels of SZP expression. Regional SZP patterns were regulated by mechanical signals and correlated with tribological behavior. Direct relationships were demonstrated between high levels of SZP expression, maximum contact pressures, and low friction coefficients. Levels of SZP expression and accumulation were increased by applying shear stress, depending on location within the knee, and were decreased to control levels with the use of a specific inhibitor of TGFbeta receptor type I kinase and subsequent phospho-Smad2/3 activity.

CONCLUSION

These findings indicate a new role for TGFbeta signaling in the mechanism of cellular mechanotransduction that is especially significant for joint lubrication.

摘要

目的

机械信号是组织形态发生、维持以及再生医学中修复策略的关键决定因素,尽管机械转导的分子机制仍有待阐明。本研究旨在探究一种关键的关节润滑剂——表面区蛋白(SZP)表达的机械转导过程。

方法

首先使用免疫印迹法对从未成熟牛股骨髁获取的软骨中SZP的区域表达进行定量,并通过免疫组织化学法进行可视化。使用压敏膜和用于关节测试的载荷施加系统完成全关节的接触压力映射。在边界润滑条件下,使用经改装用于往复滑动的销盘摩擦计获取软骨塞的摩擦测量值。对关节软骨外植体进行剪切加载直接机械刺激,分别在有和没有抑制转化生长因子β(TGFβ)信号传导的情况下进行,通过酶联免疫吸附测定法定量培养基中的SZP含量。

结果

最初在膝关节软骨中发现了意想不到的SZP定位模式,前部区域呈现高水平的SZP表达。区域SZP模式受机械信号调节,并与摩擦学行为相关。高水平的SZP表达、最大接触压力和低摩擦系数之间存在直接关系。根据膝关节内的位置,施加剪切应力会增加SZP的表达和积累水平,而使用I型TGFβ受体激酶的特异性抑制剂和随后的磷酸化Smad2/3活性可将其降低至对照水平。

结论

这些发现表明TGFβ信号传导在细胞机械转导机制中具有新作用,这对关节润滑尤为重要。

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