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通过纳米串技术对高度降解的固定组织中的mRNA进行定量:一项比较研究。

Quantifying mRNA in Highly Degraded Fixed Tissues by Nanostring Technology: A Comparative Study.

作者信息

Azzalini Eros, Di Stefano Barbara, Canzonieri Vincenzo, Venesio Tiziana, Miglio Umberto, Marchiò Caterina, Sapino Anna, Previderè Carlo, Fattorini Paolo, Bonin Serena

机构信息

Department of Medical Sciences, University of Trieste, 34149 Trieste, Italy.

Pathology Unit, Centro di Riferimento Oncologico (CRO), IRCCS, Aviano-National Cancer Institute, 33081 Pordenone, Italy.

出版信息

Methods Protoc. 2024 May 7;7(3):40. doi: 10.3390/mps7030040.

Abstract

Archive tissues are the most available source of human tissues useful for molecular analysis in translational research. The main issues for those specimens are the modification and degradation of biomolecules, namely proteins, DNA, and RNA. In the last decade, several high-throughput analytical methods have been applied to archive tissues. Although histological tissues are fixed in neutral-buffered formalin nowadays, in the recent past, Bouin's solution was also used in tissue processing. The present study aims to investigate the feasibility of nCounter Nanostring hybridization in quantifying mRNA in highly degraded samples, such as Bouin's fixed and paraffin-embedded (BFPE) tissues, in comparison to the standard formalin-fixed and paraffin-embedded (FFPE) tissues as a source of RNA. A total of 16 paraffin-embedded tissue blocks from eight patients were analyzed (8 were FFPE and 8 were BEPE). Nanostring technology was applied to 300 ng of each RNA sample, whereas 360 ng of the same templates were retrotranscribed and submitted to qPCR and ddPCR. Our results show that the Nanostring technology outperforms the reference methods (ddPCR and qPCR) in detecting target mRNA in FFPE and BFPE samples. However, even Nanostring technology does not escape the limitation imposed by the degradation of the RNA templates, which could lead to misleading conclusions on the gene expression level.

摘要

存档组织是转化研究中用于分子分析的最易获取的人体组织来源。这些标本的主要问题是生物分子(即蛋白质、DNA和RNA)的修饰和降解。在过去十年中,几种高通量分析方法已应用于存档组织。尽管如今组织学组织用中性缓冲福尔马林固定,但在过去,Bouin氏液也用于组织处理。本研究旨在探讨与作为RNA来源的标准福尔马林固定石蜡包埋(FFPE)组织相比,nCounter Nanostring杂交技术在定量高度降解样本(如Bouin氏固定石蜡包埋(BFPE)组织)中mRNA的可行性。分析了来自8名患者的总共16个石蜡包埋组织块(8个为FFPE,8个为BEPE)。将Nanostring技术应用于每个RNA样本的300 ng,而将相同模板的360 ng进行逆转录并进行qPCR和ddPCR。我们的结果表明,在检测FFPE和BFPE样本中的靶mRNA方面,Nanostring技术优于参考方法(ddPCR和qPCR)。然而,即使是Nanostring技术也无法摆脱RNA模板降解带来的限制,这可能导致对基因表达水平得出误导性结论。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2f02/11130824/b6ad49220641/mps-07-00040-g001.jpg

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