Profiling gene expression in whole blood samples following an in-vitro challenge.

Sabine Spijker, Joyce C H van de Leemput, Chantal Hoekstra, Dorret I Boomsma, August B Smit
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引用次数: 16

Abstract

Genomics tools (gene- and protein-expression studies) can be used to find possible target genes involved in a quantifiable trait or disease state. However in many instances, cells and tissues directly involved in the trait's expression, for example, brain tissue, are not amenable for gene expression analysis. Whole blood cells share a molecular make-up for cellular communication and gene regulation systems with many other cell types, for example, neuronal cells, and have the advantage of being very accessible for gene profiling. We investigated the feasibility of nationwide blood sample collection for lymphocyte RNA isolation and real-time PCR analysis to quantify genomic responses. We tested several designs for blood collection and storage: blood sampling in PAXgene blood collection tubes and storage at -20 degrees C, blood sampling in heparin tubes and decanting the samples (with or without in-vitro stimulus) into either PAXgene blood collection tubes and storage at -20 degrees C, or polypropylene tubes followed by snap-freezing and storage at -80 degrees C. The latter procedure is the best cost-wise when only small amounts of total RNA are needed for downstream applications. Lymphocyte gene expression studies are most likely hampered by the quality of isolated RNA rather than the sampling method. We show that large-scale nationwide sample collections did not alter RNA quality or gene expression levels when compared to sampling and processing in a more controlled way. To this end, we present an optimized protocol for easy and standardized isolation of high quality RNA using the PAXgene isolation kit. Based on these results, we suggest that whole blood genomic data can be used as a genomic probe in experimental and clinical research.

体外刺激后全血样本基因表达谱分析。
基因组学工具(基因和蛋白质表达研究)可用于发现与可量化特征或疾病状态相关的可能靶基因。然而,在许多情况下,直接参与性状表达的细胞和组织,例如脑组织,不适合基因表达分析。全血细胞与许多其他细胞类型(例如神经元细胞)共享细胞通信和基因调控系统的分子组成,并且具有易于进行基因谱分析的优势。我们研究了在全国范围内采集血液样本进行淋巴细胞RNA分离和实时PCR分析以量化基因组反应的可行性。我们测试了几种血液采集和储存的设计:在PAXgene采血管中采集血液并在-20℃下储存,在肝素管中采集血液并将样品(有或没有体外刺激)倒入PAXgene采血管中并在-20℃下储存,或在聚丙烯管中进行快速冷冻并在-80℃下储存。当下游应用只需要少量的总RNA时,后一种程序是最经济的。淋巴细胞基因表达的研究很可能受到分离RNA质量而不是采样方法的阻碍。我们表明,与以更可控的方式取样和处理相比,大规模的全国范围内的样本收集并未改变RNA质量或基因表达水平。为此,我们提出了一种使用PAXgene分离试剂盒简便、标准化地分离高质量RNA的优化方案。基于这些结果,我们建议全血基因组数据可以作为实验和临床研究中的基因组探针。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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