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Technical Variability Is Greater than Biological Variability in a Microarray Experiment but Both Are Outweighed by Changes Induced by Stimulation

机译:在微阵列实验中技术变异性大于生物变异性但两者都被刺激引起的变化所抵消

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摘要

IntroductionA central issue in the design of microarray-based analysis of global gene expression is that variability resulting from experimental processes may obscure changes resulting from the effect being investigated. This study quantified the variability in gene expression at each level of a typical in vitro stimulation experiment using human peripheral blood mononuclear cells (PBMC). The primary objective was to determine the magnitude of biological and technical variability relative to the effect being investigated, namely gene expression changes resulting from stimulation with lipopolysaccharide (LPS).
机译:简介设计基于微阵列的全局基因表达的分析中的一个中心问题是,实验过程导致的可变性可能会掩盖正在研究的效应引起的变化。这项研究量化了使用人外周血单核细胞(PBMC)进行的典型体外刺激实验中每个水平基因表达的变异性。主要目的是确定相对于所研究作用而言,生物学和技术变异的程度,即由脂多糖(LPS)刺激引起的基因表达变化。

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