Degot Sébastien, Auzan Muriel, Chapuis Violaine, Béghin Anne, Chadeyras Amélie, Nelep Constantin, Calvo-Muñoz Maria Luisa, Young Joanne, Chatelain François, Fuchs Alexandra
CYTOO Cell Architects, Grenoble, France.
J Vis Exp. 2010 Dec 2(46):2514. doi: 10.3791/2514.
To date, most HCA (High Content Analysis) studies are carried out with adherent cell lines grown on a homogenous substrate in tissue-culture treated micro-plates. Under these conditions, cells spread and divide in all directions resulting in an inherent variability in cell shape, morphology and behavior. The high cell-to-cell variance of the overall population impedes the success of HCA, especially for drug development. The ability of micropatterns to normalize the shape and internal polarity of every individual cell provides a tremendous opportunity for solving this critical bottleneck (1-2). To facilitate access and use of the micropatterning technology, CYTOO has developed a range of ready to use micropatterns, available in coverslip and microwell formats. In this video article, we provide detailed protocols of all the procedures from cell seeding on CYTOOchip micropatterns, drug treatment, fixation and staining to automated acquisition, automated image processing and final data analysis. With this example, we illustrate how micropatterns can facilitate cell-based assays. Alterations of the cell cytoskeleton are difficult to quantify in cells cultured on homogenous substrates, but culturing cells on micropatterns results in a reproducible organization of the actin meshwork due to systematic positioning of the cell adhesion contacts in every cell. Such normalization of the intracellular architecture allows quantification of even small effects on the actin cytoskeleton as demonstrated in these set of protocols using blebbistatin, an inhibitor of the actin-myosin interaction.
迄今为止,大多数高内涵分析(HCA)研究都是在组织培养处理过的微孔板中,在均质底物上培养贴壁细胞系来进行的。在这些条件下,细胞向各个方向铺展和分裂,导致细胞形状、形态和行为存在内在变异性。总体细胞群体中细胞间的高差异阻碍了高内涵分析的成功,尤其是在药物开发方面。微图案化能够使每个细胞的形状和内部极性标准化,这为解决这一关键瓶颈提供了巨大机遇(1 - 2)。为了便于微图案化技术的获取和使用,CYTOO公司开发了一系列即用型微图案,有盖玻片和微孔板两种形式。在这篇视频文章中,我们提供了从在CYTOO芯片微图案上接种细胞、药物处理、固定和染色到自动采集、自动图像处理及最终数据分析等所有程序的详细方案。通过这个例子,我们展示了微图案如何促进基于细胞的检测。在均质底物上培养的细胞中,细胞骨架的改变难以量化,但在微图案上培养细胞会由于每个细胞中细胞黏附接触的系统定位,使肌动蛋白网络呈现出可重复的组织形式。细胞内结构的这种标准化使得即使是对肌动蛋白细胞骨架的微小影响也能够被量化,正如在这组使用肌动蛋白 - 肌球蛋白相互作用抑制剂blebbistatin的方案中所展示的那样。