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Microarray analysis of RNA extracted from formalin-fixed, paraffin-embedded and matched fresh-frozen ovarian adenocarcinomas

机译:从福尔马林固定,石蜡包埋和匹配的新鲜冷冻卵巢腺癌中提取的RNA的微阵列分析

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Background Gene expression profiling of formalin-fixed, paraffin-embedded (FFPE) samples represents a valuable approach for advancing oncology diagnostics and enhancing retrospective clinical studies; however, at present, this methodology still requires optimization and thus has not been extensively used. Here, we utilized thorough quality control methods to assess RNA extracted from FFPE samples and then compared it to RNA extracted from matched fresh-frozen (FF) counterparts. We preformed genome-wide expression profiling of FF and FFPE ovarian serous adenocarcinoma sample pairs and compared their gene signatures to normal ovary samples. Methods RNA from FFPE samples was extracted using two different methods, Ambion and Agencourt, and its quality was determined by profiling starting total RNA on Bioanalyzer and by amplifying increasing size fragments of beta actin ( ACTB ) and claudin 3 ( CLDN3 ) by reverse-transcriptase polymerase chain reaction. Five matched FF and FFPE ovarian serous adenocarcinoma samples, as well as a set of normal ovary samples, were profiled using whole genome Agilent microarrays. Reproducibility of the FF and FFPE replicates was measured using Pearson correlation, whereas comparison between the FF and FFPE samples was done using a Z-score analysis. Results Data analysis showed high reproducibility of expression within each FF and FFPE method, whereas matched FF and FFPE pairs demonstrated lower similarity, emphasizing an inherent difference between the two sample types. Z-score analysis of matched FF and FFPE samples revealed good concordance of top 100 differentially expressed genes with the highest correlation of 0.84. Genes characteristic of ovarian serous adenocarcinoma, including a well known marker CLDN3 , as well as potentially some novel markers, were identified by comparing gene expression profiles of ovarian adenocarcinoma to those of normal ovary. Conclusion Conclusively, we showed that systematic assessment of FFPE samples at the RNA level is essential for obtaining good quality gene expression microarray data. We also demonstrated that profiling of not only FF but also of FFPE samples can be successfully used to identify differentially expressed genes characteristic of ovarian carcinoma.
机译:背景福尔马林固定,石蜡包埋(FFPE)样品的基因表达谱分析是推进肿瘤学诊断和加强回顾性临床研究的宝贵方法。但是,目前该方法仍需要优化,因此尚未得到广泛使用。在这里,我们使用了彻底的质量控制方法来评估从FFPE样品中提取的RNA,然后将其与从匹配的新鲜冷冻(FF)对应物中提取的RNA进行比较。我们进行了FF和FFPE卵巢浆液性腺癌样品对的全基因组表达谱分析,并将它们的基因特征与正常卵巢样品进行了比较。方法使用两种不同的方法(Ambion和Agencourt)从FFPE样品中提取RNA,并通过在Bioanalyzer上分析起始总RNA并通过逆转录酶扩增β肌动蛋白(ACTB)和claudin 3(CLDN3)的大小不断增加的片段来测定其质量聚合酶链反应。使用全基因组安捷伦微阵列分析了五个匹配的FF和FFPE卵巢浆液性腺癌样品,以及一组正常卵巢样品。使用Pearson相关性测量FF和FFPE复制品的可重复性,而使用Z评分分析进行FF和FFPE样品之间的比较。结果数据分析显示,在每种FF和FFPE方法中表达均具有较高的再现性,而匹配的FF和FFPE对显示出较低的相似性,强调了两种样品类型之间的固有差异。匹配的FF和FFPE样品的Z得分分析显示,前100个差异表达基因具有良好的一致性,相关性最高,为0.84。通过将卵巢腺癌的基因表达谱与正常卵巢的基因表达谱进行比较,可以鉴定出卵巢浆液性腺癌的特征基因,包括众所周知的标记物CLDN3以及潜在的一些新型标记物。结论结论是,我们表明在FF水平上对FFPE样品进行系统评估对于获得高质量的基因表达微阵列数据至关重要。我们还证明,不仅FF而且FFPE样品的概况分析可以成功地用于鉴定卵巢癌特征性差异表达基因。

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