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体外观察和定量肌肉卫星细胞运动性及侵袭性的方法

Methods for Observing and Quantifying Muscle Satellite Cell Motility and Invasion In Vitro.

作者信息

Lund Dane K, McAnulty Patrick, Siegel Ashley L, Cornelison Ddw

机构信息

Division of Biological Sciences and Christopher S. Bond Life Sciences Center, University of Missouri, 1201 Rollins Street, Columbia, MO, 65211 7310, USA.

Developmental Biology Program, Sloan Kettering Institute, New York, NY, USA.

出版信息

Methods Mol Biol. 2017;1556:303-315. doi: 10.1007/978-1-4939-6771-1_16.

Abstract

Motility and/or chemotaxis of satellite cells has been suggested or observed in multiple in vitro and in vivo contexts. Satellite cell motility also affects the efficiency of muscle regeneration, particularly in the context of engrafted exogenous cells. Consequently, there is keen interest in determining what cell-autonomous and environmental factors influence satellite cell motility and chemotaxis in vitro and in vivo. In addition, the ability of activated satellite cells to relocate in vivo would suggest that they must be able to invade and transit through the extracellular matrix (ECM), which is supported by studies in which alteration or addition of matrix metalloprotease (MMP) activity enhanced the spread of engrafted satellite cells. However, despite its potential importance, analysis of satellite cell motility or invasion quantitatively even in an in vitro setting can be difficult; one of the most powerful techniques for overcoming these difficulties is timelapse microscopy. Identification and longitudinal evaluation of individual cells over time permits not only quantification of variations in motility due to intrinsic or extrinsic factors, it permits observation and analysis of other (frequently unsuspected) cellular activities as well. We describe here three protocols developed in our group for quantitatively analyzing satellite cell motility over time in two dimensions on purified ECM substrates, in three dimensions on a living myofiber, and in three dimensions through an artificial matrix.

摘要

在多种体外和体内环境中,已有人提出或观察到卫星细胞的运动性和/或趋化性。卫星细胞的运动性也会影响肌肉再生的效率,特别是在外源细胞植入的情况下。因此,人们非常关注确定在体外和体内影响卫星细胞运动性和趋化性的细胞自主因素和环境因素。此外,活化的卫星细胞在体内重新定位的能力表明它们必须能够侵入并穿过细胞外基质(ECM),这一观点得到了一些研究的支持,这些研究表明改变或增加基质金属蛋白酶(MMP)的活性可增强植入卫星细胞的扩散。然而,尽管其具有潜在的重要性,但即使在体外环境中对卫星细胞的运动性或侵袭进行定量分析也可能很困难;克服这些困难的最有效技术之一是延时显微镜。随着时间的推移对单个细胞进行识别和纵向评估,不仅可以量化由于内在或外在因素导致的运动性变化,还可以观察和分析其他(通常未被怀疑的)细胞活动。我们在此描述我们小组开发的三种方案,用于在纯化的ECM底物上二维、在活肌纤维上三维以及通过人工基质三维定量分析卫星细胞随时间的运动性。

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