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甲醛固定和荧光激活分选细胞中基因表达的定量。

Quantitation of gene expression in formaldehyde-fixed and fluorescence-activated sorted cells.

机构信息

Department of Molecular and Comparative Pathobiology, Johns Hopkins University School of Medicine, Baltimore, Maryland, United States of America.

出版信息

PLoS One. 2013 Sep 2;8(9):e73849. doi: 10.1371/journal.pone.0073849. eCollection 2013.

Abstract

Fluorescence-activated cell sorting (FACS) is a sensitive and valuable technique to characterize cellular subpopulations and great advances have been made using this approach. Cells are often fixed with formaldehyde prior to the sorting process to preserve cell morphology and maintain the expression of surface molecules, as well as to ensure safety in the sorting of infected cells. It is widely recognized that formaldehyde fixation alters RNA and DNA structure and integrity, thus analyzing gene expression in these cells has been difficult. We therefore examined the effects of formaldehyde fixation on the stability and quantitation of nucleic acids in cell lines, primary leukocytes and also cells isolated from SIV-infected pigtailed macaques. We developed a method to extract RNA from fixed cells that yielded the same amount of RNA as our common method of RNA isolation from fresh cells. Quantitation of RNA by RT-qPCR in fixed cells was not always comparable with that in unfixed cells. In comparison, when RNA was measured by the probe-based NanoString system, there was no significant difference in RNA quantitation. In addition, we demonstrated that quantitation of proviral DNA in fixed cells by qPCR is comparable to that in unfixed cells when normalized by a single-copy cellular gene. These results provide a systematic procedure to quantitate gene expression in cells that have been fixed with formaldehyde and sorted by FACS.

摘要

荧光激活细胞分选(FACS)是一种用于鉴定细胞亚群的灵敏而有价值的技术,在使用这种方法方面已经取得了重大进展。在分选过程之前,细胞通常用甲醛固定,以保持细胞形态和表面分子的表达,并确保感染细胞分选的安全性。人们普遍认识到,甲醛固定会改变 RNA 和 DNA 的结构和完整性,因此分析这些细胞中的基因表达一直很困难。因此,我们研究了甲醛固定对细胞系、原代白细胞以及从 SIV 感染的长尾猕猴中分离的细胞中核酸的稳定性和定量的影响。我们开发了一种从固定细胞中提取 RNA 的方法,该方法从新鲜细胞中提取 RNA 的常见方法获得相同量的 RNA。固定细胞中 RT-qPCR 定量的 RNA 并不总是与未固定细胞中的 RNA 定量相媲美。相比之下,当使用基于探针的 NanoString 系统测量 RNA 时,RNA 定量没有显著差异。此外,我们证明,当通过单拷贝细胞基因进行归一化时,qPCR 定量固定细胞中的前病毒 DNA 与未固定细胞中的定量相当。这些结果提供了一种系统的程序,用于定量用甲醛固定并通过 FACS 分选的细胞中的基因表达。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b224/3759445/edd359fc5987/pone.0073849.g001.jpg

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