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基于实时定量 PCR 技术的福尔马林固定石蜡包埋样本中 microRNA 表达定量分析的优化与分析。

Optimization and analysis of a quantitative real-time PCR-based technique to determine microRNA expression in formalin-fixed paraffin-embedded samples.

机构信息

Division of Applied Molecular Oncology, Ontario Cancer Institute, University Health Network, Toronto, ON, Canada.

出版信息

BMC Biotechnol. 2010 Jun 23;10:47. doi: 10.1186/1472-6750-10-47.

Abstract

BACKGROUND

MicroRNAs (miRs) are non-coding RNA molecules involved in post-transcriptional regulation, with diverse functions in tissue development, differentiation, cell proliferation and apoptosis. miRs may be less prone to degradation during formalin fixation, facilitating miR expression studies in formalin-fixed paraffin-embedded (FFPE) tissue.

RESULTS

Our study demonstrates that the TaqMan Human MicroRNA Array v1.0 (Early Access) platform is suitable for miR expression analysis in FFPE tissue with a high reproducibility (correlation coefficients of 0.95 between duplicates, p < 0.00001) and outlines the optimal performance conditions of this platform using clinical FFPE samples. We also outline a method of data analysis looking at differences in miR abundance between FFPE and fresh-frozen samples. By dividing the profiled miR into abundance strata of high (Ct<30), medium (30 < or = Ct < or = 35), and low (Ct>35), we show that reproducibility between technical replicates, equivalent dilutions, and FFPE vs. frozen samples is best in the high abundance stratum. We also demonstrate that the miR expression profiles of FFPE samples are comparable to those of fresh-frozen samples, with a correlation of up to 0.87 (p < 0.001), when examining all miRs, regardless of RNA extraction method used. Examining correlation coefficients between FFPE and fresh-frozen samples in terms of miR abundance reveals correlation coefficients of up to 0.32 (low abundance), 0.70 (medium abundance) and up to 0.97 (high abundance).

CONCLUSION

Our study thus demonstrates the utility, reproducibility, and optimization steps needed in miR expression studies using FFPE samples on a high-throughput quantitative PCR-based miR platform, opening up a realm of research possibilities for retrospective studies.

摘要

背景

MicroRNAs (miRs) 是参与转录后调控的非编码 RNA 分子,在组织发育、分化、细胞增殖和凋亡等方面具有多种功能。miRs 在福尔马林固定过程中可能不易降解,从而有利于在福尔马林固定石蜡包埋 (FFPE) 组织中进行 miR 表达研究。

结果

我们的研究表明,TaqMan Human MicroRNA Array v1.0(早期访问)平台适用于 FFPE 组织中的 miR 表达分析,具有很高的重现性(重复之间的相关系数为 0.95,p<0.00001),并使用临床 FFPE 样本概述了该平台的最佳性能条件。我们还概述了一种分析方法,用于观察 FFPE 和新鲜冷冻样本之间 miR 丰度的差异。通过将所分析的 miR 分为高丰度(Ct<30)、中丰度(30 <或= Ct <或= 35)和低丰度(Ct>35)三个丰度层次,我们表明在高丰度层次,技术重复、等效稀释和 FFPE 与冷冻样本之间的重现性最好。我们还证明,当检查所有 miRs 时,无论使用何种 RNA 提取方法,FFPE 样本的 miR 表达谱与新鲜冷冻样本相似,相关性高达 0.87(p<0.001)。根据 miR 丰度检查 FFPE 和新鲜冷冻样本之间的相关系数,发现低丰度的相关系数高达 0.32,中丰度的相关系数高达 0.70,高丰度的相关系数高达 0.97。

结论

因此,我们的研究表明,在基于高通量定量 PCR 的 miR 平台上使用 FFPE 样本进行 miR 表达研究具有实用性、重现性和优化步骤,为回顾性研究开辟了广阔的研究可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d9b7/2902407/b3c3ed8e8170/1472-6750-10-47-1.jpg

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