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Histological staining methods preparatory to laser capture microdissection significantly affect the integrity of the cellular RNA

机译:激光捕获显微切割的组织学染色方法显着影响细胞RNA的完整性

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摘要

BackgroundGene expression profiling by microarray analysis of cells enriched by laser capture microdissection (LCM) faces several technical challenges. Frozen sections yield higher quality RNA than paraffin-imbedded sections, but even with frozen sections, the staining methods used for histological identification of cells of interest could still damage the mRNA in the cells. To study the contribution of staining methods to degradation of results from gene expression profiling of LCM samples, we subjected pellets of the mouse plasma cell tumor cell line TEPC 1165 to direct RNA extraction and to parallel frozen sectioning for LCM and subsequent RNA extraction. We used microarray hybridization analysis to compare gene expression profiles of RNA from cell pellets with gene expression profiles of RNA from frozen sections that had been stained with hematoxylin and eosin (H&E), Nissl Stain (NS), and for immunofluorescence (IF) as well as with the plasma cell-revealing methyl green pyronin (MGP) stain. All RNAs were amplified with two rounds of T7-based in vitro transcription and analyzed by two-color expression analysis on 10-K cDNA microarrays.
机译:通过对通过激光捕获显微切割(LCM)富集的细胞进行微阵列分析来进行背景基因表达谱分析,面临一些技术挑战。冷冻切片比石蜡包埋切片可产生更高质量的RNA,但是即使使用冷冻切片,用于组织学鉴定目标细胞的染色方法仍会损坏细胞中的mRNA。为了研究染色方法对LCM样品基因表达谱分析结果降解的贡献,我们对小鼠浆细胞肿瘤细胞系TEPC 1165的沉淀物进行了直接RNA提取,并进行了平行冷冻切片以进行LCM和随后的RNA提取。我们使用微阵列杂交分析来比较细胞沉淀中RNA的基因表达谱与已经用苏木精和曙红(H&E),尼氏染色(NS)染色的冰冻切片的RNA基因表达谱,以及免疫荧光(IF)就像血浆细胞暴露的甲基绿吡喃酮(MGP)染色一样。通过两轮基于T7的体外转录扩增所有RNA,并在10-K cDNA微阵列上通过双色表达分析进行分析。

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