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通过单细胞运动的动态多变量分析对同基因细胞系的迁移进行量化。

Migration of isogenic cell lines quantified by dynamic multivariate analysis of single-cell motility.

作者信息

Harris Mark P, Kim Eric, Weidow Brandy, Wikswo John P, Quaranta Vito

机构信息

Department of Cancer Biology, Vanderbilt University, Nashville, Tennessee 37232-6840, USA.

出版信息

Cell Adh Migr. 2008 Apr-May;2(2):127-36. doi: 10.4161/cam.2.2.6482.

Abstract

Cell migration is essential in many physiological and pathological processes. To understand this complex behavior, researchers have turned to quantitative, in vitro, image-based measurements to dissect the steps of cellular motility. With the rise of automated microscopy, the bottleneck in these approaches is no longer data acquisition, but data analysis. Using time-lapse microscopy and computer-assisted image analysis, we have developed a novel, quantitative assay that extracts a multivariate profile for cellular motility. This technique measures three dynamic parameters per single cell: speed, surface area, and an in-dex of cell expansion/contraction activity (DECCA). Our assay can be used in combination with a variety of extracellular matrix components, or other soluble agents, to analyze the effects of the microenvironment on cellular migration dynamics in vitro. Our application was developed and tested using A431 and HT-1080 cell lines plated on laminin-332 or fibronectin substrates. Our results indicate that HT-1080 cells migrate faster, have a greater surface area, and have a higher DECCA index than A431 cells on both matrices (for all parameters, p < 0.05). Spearman's correlation coefficients suggest that for these cell lines and matrices, various combinations of the three measurements display low to medium-high levels of correlation. These findings compare well with previous literature. Our approach provides new tools to measure cellular migration dynamics and address questions on the relationship between cell motility and the microenvironment, using only common microscopy techniques, accessible image analysis applications, and a basic desktop computer for image processing.

摘要

细胞迁移在许多生理和病理过程中至关重要。为了理解这种复杂行为,研究人员已转向基于体外图像的定量测量,以剖析细胞运动的各个步骤。随着自动显微镜技术的兴起,这些方法中的瓶颈不再是数据采集,而是数据分析。利用延时显微镜和计算机辅助图像分析,我们开发了一种新颖的定量测定法,可提取细胞运动的多变量概况。该技术为每个单细胞测量三个动态参数:速度、表面积以及细胞扩张/收缩活性指数(DECCA)。我们的测定法可与多种细胞外基质成分或其他可溶性因子结合使用,以分析微环境对体外细胞迁移动力学的影响。我们的应用是使用接种在层粘连蛋白-332或纤连蛋白底物上的A431和HT-1080细胞系开发并测试的。我们的结果表明,在两种基质上,HT-1080细胞比A431细胞迁移得更快,具有更大的表面积,并且具有更高的DECCA指数(所有参数,p < 0.05)。斯皮尔曼相关系数表明,对于这些细胞系和基质,这三项测量的各种组合显示出低至中高水平的相关性。这些发现与先前的文献比较吻合。我们的方法提供了新工具,仅使用普通显微镜技术、易于使用的图像分析应用程序和用于图像处理的基本台式计算机,就能测量细胞迁移动力学并解决有关细胞运动与微环境之间关系的问题。

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