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使用微阵列分析检测细胞混合物中单个细胞类型的基因表达。

Detection of gene expression in an individual cell type within a cell mixture using microarray analysis.

作者信息

Bryant Penelope A, Smyth Gordon K, Robins-Browne Roy, Curtis Nigel

机构信息

Department of Paediatrics, The University of Melbourne, Royal Children's Hospital Melbourne, Parkville, Victoria, Australia.

出版信息

PLoS One. 2009;4(2):e4427. doi: 10.1371/journal.pone.0004427. Epub 2009 Feb 12.

Abstract

BACKGROUND

A central issue in the design of microarray-based analysis of global gene expression is the choice between using cells of single type and a mixture of cells. This study quantified the proportion of lipopolysaccharide (LPS) induced differentially expressed monocyte genes that could be measured in peripheral blood mononuclear cells (PBMC), and determined the extent to which gene expression in the non-monocyte cell fraction diluted or obscured fold changes that could be detected in the cell mixture.

METHODOLOGY/PRINCIPAL FINDINGS: Human PBMC were stimulated with LPS, and monocytes were then isolated by positive (Mono+) or negative (Mono-) selection. The non-monocyte cell fraction (MonoD) remaining after positive selection of monocytes was used to determine the effect of non-monocyte cells on overall expression. RNA from LPS-stimulated PBMC, Mono+, Mono- and MonoD samples was co-hybridised with unstimulated RNA for each cell type on oligonucleotide microarrays. There was a positive correlation in gene expression between PBMC and both Mono+ (0.77) and Mono- (0.61-0.67) samples. Analysis of individual genes that were differentially expressed in Mono+ and Mono- samples showed that the ability to detect expression of some genes was similar when analysing PBMC, but for others, differential expression was either not detected or changed in the opposite direction. As a result of the dilutional or obscuring effect of gene expression in non-monocyte cells, overall about half of the statistically significant LPS-induced changes in gene expression in monocytes were not detected in PBMC. However, 97% of genes with a four fold or greater change in expression in monocytes after LPS stimulation, and almost all (96-100%) of the top 100 most differentially expressed monocyte genes were detected in PBMC.

CONCLUSIONS/SIGNIFICANCE: The effect of non-responding cells in a mixture dilutes or obscures the detection of subtle changes in gene expression in an individual cell type. However, for studies in which only the most highly differentially expressed genes are of interest, separating and analysing individual cell types may be unnecessary.

摘要

背景

基于微阵列的全球基因表达分析设计中的一个核心问题是在使用单一类型细胞和细胞混合物之间做出选择。本研究量化了脂多糖(LPS)诱导的外周血单个核细胞(PBMC)中可检测到的差异表达单核细胞基因的比例,并确定了非单核细胞部分的基因表达在多大程度上稀释或掩盖了细胞混合物中可检测到的倍数变化。

方法/主要发现:用LPS刺激人PBMC,然后通过阳性(Mono+)或阴性(Mono-)选择分离单核细胞。单核细胞阳性选择后剩余的非单核细胞部分(MonoD)用于确定非单核细胞对整体表达的影响。来自LPS刺激的PBMC、Mono+、Mono-和MonoD样本的RNA与每种细胞类型的未刺激RNA在寡核苷酸微阵列上共同杂交。PBMC与Mono+(0.77)和Mono-(0.61 - 0.67)样本之间的基因表达呈正相关。对Mono+和Mono-样本中差异表达的单个基因进行分析表明,在分析PBMC时,检测某些基因表达的能力相似,但对于其他基因,要么未检测到差异表达,要么差异表达方向相反。由于非单核细胞中基因表达的稀释或掩盖作用,总体而言,PBMC中未检测到约一半统计学上显著的LPS诱导的单核细胞基因表达变化。然而,LPS刺激后单核细胞中表达变化四倍或更大的基因中有97%,以及差异表达最明显的前100个单核细胞基因中几乎所有(96 - 100%)在PBMC中都能检测到。

结论/意义:混合物中无反应细胞的作用会稀释或掩盖对单个细胞类型中基因表达细微变化的检测。然而,对于仅关注差异表达最高的基因的研究,分离和分析单个细胞类型可能没有必要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4966/2639697/23868ede0243/pone.0004427.g001.jpg

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