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Limitations of high throughput methods for miRNA expression profiles in non-functioning pituitary adenomas

机译:非功能性垂体腺瘤中miRNA表达谱的高通量方法的限制

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Microarray, RT-qPCR based arrays and next-generation-sequencing (NGS) are available high-throughput methods for miRNA profiling (miRNome). Analytical and biological performance of these methods were tested in identification of biologically relevant miRNAs in non-functioning pituitary adenomas (NFPA). miRNome of 4 normal pituitary (NP) and 8 NFPA samples was determined by these platforms and expression of 21 individual miRNAs was measured on 30 (20 NFPA and 10 NP) independent samples. Complex bioinformatics was used. 132 and 137 miRNAs were detected by all three platforms in NP and NFPA, respectively, of which 25 were differentially expressed (fold change 2). The strongest correlation was observed between microarray and TaqMan-array, while the data obtained by NGS were the most discordant despite of various bioinformatics settings. As a technical validation we measured the expression of 21 selected miRNAs by individual RT-qPCR and we were able to validate 35.1%, 76.2% and 71.4% of the miRNAs revealed by SOLiD, TLDA and microarray result, respectively. We performed biological validation using an extended number of samples (20 NFPAs and 8 NPs). Technical and biological validation showed high correlation (p 0.001; R = 0.96). Pathway and network analysis revealed several common pathways but no pathway showed the same activation score. Using the 25 platform-independent miRNAs developmental pathways were the top functional categories relevant for NFPA genesis. The difference among high-throughput platforms is of great importance and selection of screening method can influence experimental results. Validation by another platform is essential in order to avoid or to minimalize the platform specific errors.
机译:微阵列,RT-QPCR基数和下一代测序(NGS)是MiRNA分析(MiRNOME)的高通量方法。测试这些方法的分析和生物学性能在非功能性垂体腺瘤(NFPA)中的生物相关miRNA的鉴定中进行了鉴定。通过这些平台测定4个正常垂体(NP)和8个NFPA样品的Mirnome,并在30(20nFPA和10 NP)独立的样品上测量21个单独miRNA的表达。使用复杂的生物信息学。在NP和NFPA中的所有三个平台检测到132和137 mIRNA,其中25次差异表达(折叠变化& 2)。在微阵列和Taqman-array之间观察到最强的相关性,而尽管各种生物信息学设置,NGS获得的数据最不和谐。作为技术验证,我们通过RT-QPCR测量了21种所选miRNA的表达,我们能够分别验证由固体,T​​LDA和微阵列结果显示的35.1%,76.2%和71.4%的miRNA。我们使用扩展数量的样品(20个NFPA和8个NPS)进行了生物学验证。技术和生物验证显示出高相关(P <0.001; r = 0.96)。途径和网络分析显示出几种常见的途径,但没有途径显示相同的激活分数。使用25平台无关的MiRNA发育途径是与NFPA创世纪相关的顶级功能类别。高通量平台之间的差异非常重要,筛选方法的选择可以影响实验结果。通过另一个平台验证至关重要,以避免或更少化平台特定错误。

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