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通过成像流式细胞术进行高尔基体结构的高通量分析。

High Throughput Analysis of Golgi Structure by Imaging Flow Cytometry.

机构信息

Dept. of Biological Regulation, the Weizmann Institute of Science, Rehovot, Israel.

Dept. Of Molecular Cell Biology, the Weizmann Institute of Science, Rehovot, Israel.

出版信息

Sci Rep. 2017 Apr 11;7(1):788. doi: 10.1038/s41598-017-00909-y.

Abstract

The Golgi apparatus is a dynamic organelle, which regulates the vesicular trafficking. While cellular trafficking requires active changes of the Golgi membranes, these are not accompanied by changes in the general Golgi's structure. However, cellular processes such as mitosis, apoptosis and migration require fragmentation of the Golgi complex. Currently, these changes are most commonly studied by basic immunofluorescence and quantified by manual and subjective classification of the Golgi structure in 100-500 stained cells. Several other high-throughput methods exist as well, but those are either complicated or do not provide enough morphological information. Therefore, a simple and informative high content methodology should be beneficial for the study of Golgi architecture. Here we describe the use of high-throughput imaging flow cytometry for quantification of Golgi fragmentation, which provides a simple way to analyze the changes in an automated, quantitative and non-biased manner. Furthermore, it provides a rapid and accurate way to analyze more than 50,000 cells per sample. Our results demonstrate that this method is robust and statistically powerful, thus, providing a much-needed analytical tool for future studies on Golgi dynamics, and can be adapted to other experimental systems.

摘要

高尔基体是一种动态细胞器,它调节囊泡运输。虽然细胞运输需要高尔基体膜的主动变化,但这并不伴随着一般高尔基体结构的变化。然而,细胞过程如有丝分裂、细胞凋亡和迁移需要高尔基体复合物的碎片化。目前,这些变化最常通过基本免疫荧光来研究,并通过对 100-500 个染色细胞中的高尔基体结构进行手动和主观分类来定量。也存在其他几种高通量方法,但这些方法要么复杂,要么不能提供足够的形态信息。因此,一种简单而信息丰富的高通量方法应该有利于高尔基体结构的研究。在这里,我们描述了使用高通量成像流式细胞术来定量高尔基体碎片化,这为以自动化、定量和无偏倚的方式分析变化提供了一种简单的方法。此外,它还提供了一种快速而准确的方法来分析每个样本超过 50000 个细胞。我们的结果表明,该方法具有稳健性和统计学效力,因此为未来研究高尔基体动力学提供了急需的分析工具,并可适应于其他实验系统。

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