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Quantitative analysis of gene expression in fixed colorectal carcinoma samples as a method for biomarker validation

机译:定量分析大肠癌固定样本中的基因表达作为生物标记物验证的方法

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摘要

Biomarkers have been described as the future of oncology. Modern proteomics provide an invaluable tool for the near-whole proteome screening for proteins expressed differently in neoplastic vs. healthy tissues. However, in order to select the most promising biomarkers, an independent method of validation is required. The aim of the current study was to propose a methodology for the validation of biomarkers. Due to material availability the majority of large scale biomarker studies are performed using formalin-fixed paraffin-embedded (FFPE) tissues, therefore these were selected for use in the current study. A total of 10 genes were selected from what have been previously described as the most promising candidate biomarkers, and the expression levels were analyzed with reverse transcription-quantitative polymerase chain reaction (RT-qPCR) using calibrator normalized relative quantification with the efficiency correction. For 6/10 analyzed genes, the results were consistent with the proteomic data; for the remaining four genes, the results were inconclusive. The upregulation of karyopherin α 2 (KPNA2) and chromosome segregation 1-like (CSE1L) in colorectal carcinoma, in addition to downregulation of chloride channel accessory 1 (CLCA1), fatty acid binding protein 1 (FABP1), sodium channel, voltage gated, type VII α subunit (SCN7A) and solute carrier family 26 (anion exchanger), member 3 (SLC26A3) was confirmed. With the combined use of proteomic and genetic tools, it was reported, for the first time to the best of our knowledge, that SCN7A was downregulated in colorectal carcinoma at mRNA and protein levels. It had been previously suggested that the remaining five genes served an important role in colorectal carcinogenesis, however the current study provided strong evidence to support their use as biomarkers. Thus, it was concluded that combination of RT-qPCR with proteomics offers a powerful methodology for biomarker identification, which can be used to analyze FFPE samples.
机译:生物标志物已被描述为肿瘤学的未来。现代蛋白质组学为近全蛋白质组学筛查在肿瘤组织与健康组织中表达不同的蛋白质提供了宝贵的工具。但是,为了选择最有前途的生物标志物,需要一种独立的验证方法。当前研究的目的是提出一种验证生物标志物的方法。由于材料的可用性,大多数大规模生物标志物研究都是使用福尔马林固定石蜡包埋(FFPE)组织进行的,因此选择了这些物质用于当前研究。从先前描述为最有前途的候选生物标记物中选择了总共10个基因,并使用校正剂归一化相对定量和效率校正,通过逆转录定量聚合酶链反应(RT-qPCR)分析了表达水平。对于6/10个分析基因,结果与蛋白质组学数据一致;对于其余四个基因,结果尚无定论。大肠癌中核蛋白α2(KPNA2)和染色体分离样1(CSE1L)的上调,此外氯通道附件1(CLCA1),脂肪酸结合蛋白1(FABP1),钠通道,电压门控的下调,确认了VII型α亚基(SCN7A)和溶质载体家族26(阴离子交换剂),成员3(SLC26A3)。据我们所知,结合蛋白质组学和遗传学工具的首次使用,据报道,SCN7A在大肠癌中的mRNA和蛋白水平均被下调。以前曾有人提出,其余五个基因在结直肠癌的发生中起着重要作用,但是当前的研究提供了有力的证据来支持它们用作生物标志物。因此,可以得出结论,RT-qPCR与蛋白质组学的结合为生物标志物的鉴定提供了强大的方法,可用于分析FFPE样品。

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