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用于生物力学和机械生物学研究的大鼠尾腱制备

Preparation of rat tail tendons for biomechanical and mechanobiological studies.

作者信息

Bruneau Amélie, Champagne Nadia, Cousineau-Pelletier Paule, Parent Gabriel, Langelier Eve

机构信息

Groupe PERSEUS, Faculté de Génie Département de génie mécanique, Université de Sherbrooke.

出版信息

J Vis Exp. 2010 Jul 30(41):2176. doi: 10.3791/2176.

Abstract

Rat tail tendons (RTTs) are a common biological model used in experimental in vitro studies in the fields of tendon physiology and tendinopathy. Working with those tissues is challenging because they are very fragile, and until now there was no rigorously detailed protocol for their isolation. Faced with these challenges, we have developed methods and instruments to facilitate manipulation of RTTs and control tissue viability, sterility and integrity. This article describes the experimental procedures used to prepare RTTs for biomechanical and mechanobiological studies. Our work is divided into four main steps: extraction, cross-sectional area measurement, rinsing and loading into the bioreactor chamber. At each step, all procedures, materials and manipulations are presented in detail so that they can be easily reproduced. Moreover, the specific instruments developed are presented: a manipulation plate used to segregate RTTs, an optic micrometer to position the tissue during the cross-sectional area measurement and an anchoring system to attach the RTTs onto a bioreactor. Finally, we describe the results obtained after multiple tests to validate our methods. The viability, sterility and integrity evaluations demonstrate that our procedures are sufficiently rigorous for manipulations of fragile tissues such as rat tail tendons.

摘要

大鼠尾腱(RTTs)是肌腱生理学和肌腱病领域实验性体外研究中常用的生物学模型。处理这些组织具有挑战性,因为它们非常脆弱,而且到目前为止还没有关于其分离的严格详细方案。面对这些挑战,我们开发了方法和仪器,以促进对大鼠尾腱的操作,并控制组织的活力、无菌性和完整性。本文描述了为生物力学和机械生物学研究准备大鼠尾腱的实验程序。我们的工作分为四个主要步骤:提取、横截面积测量、冲洗和装入生物反应器腔室。在每个步骤中,所有程序、材料和操作都详细列出,以便能够轻松重现。此外,还介绍了开发的特定仪器:用于分离大鼠尾腱的操作板、横截面积测量期间定位组织的光学显微镜以及将大鼠尾腱附着到生物反应器上的锚固系统。最后,我们描述了多次测试后获得的结果,以验证我们的方法。活力、无菌性和完整性评估表明,我们的程序对于处理诸如大鼠尾腱等脆弱组织足够严格。

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