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新鲜冷冻组织的生物样本库:RNA在未固定的手术标本中是稳定的。

Biobanking of fresh frozen tissue: RNA is stable in nonfixed surgical specimens.

作者信息

Micke Patrick, Ohshima Mitsuhiro, Tahmasebpoor Simin, Ren Zhi-Ping, Ostman Arne, Pontén Fredrik, Botling Johan

机构信息

Cancer Center Karolinska, Department of Pathology-Oncology, Karolinska Institute, Stockholm, Sweden.

出版信息

Lab Invest. 2006 Feb;86(2):202-11. doi: 10.1038/labinvest.3700372.

Abstract

Molecular tools for tissue profiling, such as expression microarrays and real-time PCR, generally require collection of fresh frozen tissues as sources of high-quality RNA. The fragile nature of RNA prompted us to examine the effects of storage time and transport conditions with regard to RNA integrity and gene expression in nonfixed surgical human specimens. At surgery, fresh normal tonsil and colon tissue was cut into pieces and snap frozen. Additional fresh tissue pieces were (i) left at room temperature, (ii) kept on ice, (iii) in normal saline or (iv) in a commercial RNA-stabilizing buffer (RNAlater) and snap frozen after 0.5, 1, 3, 6 and 16 h. Structural RNA integrity was analysed by microchip electrophoresis. Surprisingly, RNA remained stable in both tissue types under all conditions tested for up to 6-16 h. Gene expression by real-time PCR of cfos, HIF1alpha, Bcl2, PCNA, TGFbeta1 and SMAD7 was analysed at different storage time points in tonsil tissue. Expression levels were essentially stable when samples were kept on ice, while marked regulation of single genes was observed during storage at room temperature, in normal saline and in RNAlater. Furthermore, we analysed selected tissue types from the local biobank representing 47 normal and malignant tissues transported on ice for up to 2-3 h before biobanking. RNA prepared from 45 of the 47 samples exhibited distinct ribosomal peaks indicating intact RNA. This study shows that RNA degradation is a minor problem during handling of fresh human tissue before biobanking. Our data indicate that nonfixed tissue specimens may be transported on ice for hours without any major influence on RNA quality and expression of the selected genes. However, further studies are warranted to clarify the impact of transport logistics on global gene expression.

摘要

用于组织分析的分子工具,如表达微阵列和实时PCR,通常需要收集新鲜冷冻组织作为高质量RNA的来源。RNA的脆弱性质促使我们研究储存时间和运输条件对非固定手术人体标本中RNA完整性和基因表达的影响。在手术时,将新鲜的正常扁桃体和结肠组织切成小块并速冻。另外的新鲜组织块分别进行如下处理:(i) 置于室温下,(ii) 保存在冰上,(iii) 置于生理盐水中,或(iv) 置于商业RNA稳定缓冲液(RNAlater)中,并在0.5、1、3、6和16小时后速冻。通过微芯片电泳分析结构RNA的完整性。令人惊讶的是,在所有测试条件下,两种组织类型中的RNA在长达6 - 16小时内都保持稳定。在扁桃体组织的不同储存时间点,通过实时PCR分析cfos、HIF1alpha、Bcl2、PCNA、TGFbeta1和SMAD7的基因表达。当样本保存在冰上时,表达水平基本稳定,而在室温、生理盐水和RNAlater中储存期间,观察到单个基因有明显的调控。此外,我们分析了当地生物样本库中代表47种正常和恶性组织的选定组织类型,这些组织在生物样本库储存前在冰上运输长达2 - 3小时。从47个样本中的45个样本制备的RNA显示出明显的核糖体峰,表明RNA完整。这项研究表明,在生物样本库储存前处理新鲜人体组织的过程中,RNA降解是一个小问题。我们的数据表明,非固定组织标本可以在冰上运输数小时,而对RNA质量和所选基因的表达没有任何重大影响。然而,有必要进一步研究以阐明运输物流对全局基因表达的影响。

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