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A Novel Stretching Platform for Applications in Cell and Tissue Mechanobiology

机译:用于细胞和组织力学生物学的新型拉伸平台

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摘要

Tools that allow the application of mechanical forces to cells and tissues or that can quantify the mechanical properties of biological tissues have contributed dramatically to the understanding of basic mechanobiology. These techniques have been extensively used to demonstrate how the onset and progression of various diseases are heavily influenced by mechanical cues. This article presents a multi-functional biaxial stretching (BAXS) platform that can either mechanically stimulate single cells or quantify the mechanical stiffness of tissues. The BAXS platform consists of four voice coil motors that can be controlled independently. Single cells can be cultured on a flexible substrate that can be attached to the motors allowing one to expose the cells to complex, dynamic, and spatially varying strain fields. Conversely, by incorporating a force load cell, one can also quantify the mechanical properties of primary tissues as they are exposed to deformation cycles. In both cases, a proper set of clamps must be designed and mounted to the BAXS platform motors in order to firmly hold the flexible substrate or the tissue of interest. The BAXS platform can be mounted on an inverted microscope to perform simultaneous transmitted light and/or fluorescence imaging to examine the structural or biochemical response of the sample during stretching experiments. This article provides experimental details of the design and usage of the BAXS platform and presents results for single cell and whole tissue studies. The BAXS platform was used to measure the deformation of nuclei in single mouse myoblast cells in response to substrate strain and to measure the stiffness of isolated mouse aortas. The BAXS platform is a versatile tool that can be combined with various optical microscopies in order to provide novel mechanobiological insights at the sub-cellular, cellular and whole tissue levels.
机译:允许对细胞和组织施加机械力或可以量化生物组织的机械特性的工具,对理解基本的机械生物学有极大的帮助。这些技术已被广泛用于证明机械提示如何严重影响各种疾病的发作和发展。本文介绍了一种多功能双轴拉伸(BAXS)平台,该平台可以机械刺激单个细胞或量化组织的机械刚度。 BAXS平台由四个可以独立控制的音圈电机组成。单个细胞可以培养在一个柔性基板上,该基板可以连接到马达上,从而使细胞能够暴露于复杂,动态和空间变化的应变场中。相反,通过合并一个力传感器,当原始组织暴露于变形循环时,也可以量化其力学性能。在这两种情况下,都必须设计一套适当的夹具并将其安装到BAXS平台电机上,以便牢固地固定感兴趣的柔性基底或组织。 BAXS平台可以安装在倒置显微镜上,以同时执行透射光和/或荧光成像,以检查拉伸实验过程中样品的结构或生化响应。本文提供了BAXS平台设计和使用的实验细节,并提出了单细胞和整个组织研究的结果。 BAXS平台用于测量单个小鼠成肌细胞响应底物应变的细胞核变形,并测量离体小鼠主动脉的刚度。 BAXS平台是一种多功能工具,可以与各种光学显微镜相结合,以便在亚细胞,细胞和整个组织水平上提供新颖的力学生物学见解。

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