Laboratory of Genomics and Immunoregulation, Life and Medical Sciences Institute (LIMES), University of Bonn, Bonn, Germany.
J Mol Diagn. 2011 Jul;13(4):452-60. doi: 10.1016/j.jmoldx.2011.03.006.
Microarray-based transcriptome analysis of peripheral blood as surrogate tissue has become an important approach in clinical implementations. However, application of gene expression profiling in routine clinical settings requires careful consideration of the influence of sample handling and RNA isolation methods on gene expression profile outcome. We evaluated the effect of different sample preservation strategies (eg, cryopreservation of peripheral blood mononuclear cells or freezing of PAXgene-stabilized whole blood samples) on gene expression profiles. Expression profiles obtained from cryopreserved peripheral blood mononuclear cells differed substantially from those of their nonfrozen counterpart samples. Furthermore, expression profiles in cryopreserved peripheral blood mononuclear cell samples were found to undergo significant alterations with increasing storage period, whereas long-term freezing of PAXgene RNA stabilized whole blood samples did not significantly affect stability of gene expression profiles. This report describes important technical aspects contributing toward the establishment of robust and reliable guidance for gene expression studies using peripheral blood and provides a promising strategy for reliable implementation in routine handling for diagnostic purposes.
基于微阵列的外周血转录组分析已成为临床应用中的一种重要方法。然而,在常规临床环境中应用基因表达谱分析需要仔细考虑样本处理和 RNA 分离方法对基因表达谱结果的影响。我们评估了不同样本保存策略(例如,外周血单个核细胞的冷冻保存或 PAXgene 稳定化全血样本的冷冻)对基因表达谱的影响。从冷冻保存的外周血单个核细胞获得的表达谱与未冷冻的对应样本的表达谱有很大差异。此外,发现冷冻保存的外周血单个核细胞样本中的表达谱随着储存时间的延长而发生显著变化,而 PAXgene RNA 稳定化全血样本的长期冷冻对基因表达谱的稳定性没有显著影响。本报告描述了有助于建立使用外周血进行基因表达研究的稳健可靠指导的重要技术方面,并为常规诊断目的的可靠实施提供了有前途的策略。