Breit Stephen, Nees Matthias, Schaefer Ulrike, Pfoersich Margit, Hagemeier Christian, Muckenthaler Martina, Kulozik Andreas E
Department of Paediatric Oncology, Haematology and Immunology, University of Heidelberg, Heidelberg, Germany.
Br J Haematol. 2004 Jul;126(2):231-43. doi: 10.1111/j.1365-2141.2004.05017.x.
Large clinical trials on leukaemia, require the transport of bone marrow (BM) from participating clinics to central diagnostic laboratories. We have investigated the impact of RNA extraction protocols and time delays between sample aspiration and RNA extraction on RNA quality and gene expression profiles. Intact RNA can be extracted from BM samples stored at room temperature for up to 48 h. Gene expression analyses using Affymetrix U95Av2 GeneChips and a custom-designed cDNA array in parallel showed that even short-term storage of BM has dramatic effects on mRNA expression of individual transcripts. Many probe sets/genes showed either reproducible deregulation (18.8%, analysis of variance <0.05), or inconsistent expression that differed from patient to patient (38.4%). Moderate alterations were observed in 42.8% genes, with a maximum fold change <2.0 in all experiments and at all time points. These profound effects complicate the use of unstabilized, shipped BM samples for gene expression analyses. The comparison of a variety of RNA stabilization reagents (e.g. PAXgene) resulted in partial conservation of the mRNA expression patterns. Immediate density centrifugation or erythrocyte lysis and freezing at -80 degrees C represent simple procedures that reliably preserved mRNA gene expression patterns in BM.
关于白血病的大型临床试验,需要将骨髓(BM)从参与试验的诊所运送到中央诊断实验室。我们研究了RNA提取方案以及样本采集与RNA提取之间的时间延迟对RNA质量和基因表达谱的影响。完整的RNA可以从在室温下保存长达48小时的BM样本中提取。使用Affymetrix U95Av2基因芯片和定制设计的cDNA阵列并行进行基因表达分析表明,即使是BM的短期保存也会对单个转录本的mRNA表达产生显著影响。许多探针集/基因显示出可重复的失调(18.8%,方差分析<0.05),或不同患者之间表达不一致(38.4%)。在42.8%的基因中观察到中度变化,在所有实验和所有时间点最大倍数变化<2.0。这些深远影响使得使用未稳定化的、运输的BM样本进行基因表达分析变得复杂。对多种RNA稳定试剂(如PAXgene)的比较导致mRNA表达模式部分得以保留。立即进行密度离心或红细胞裂解并在-80℃冷冻是可靠保存BM中mRNA基因表达模式的简单方法。