Kappel Andreas, Keller Andreas
Siemens Healthcare GmbH, Guenther-Scharowsky-Str.1, Erlangen.
Chair for Clinical Bioinformatics, Saarland University, University Hospital, Saarbruecken.
Clin Chem Lab Med. 2017 May 1;55(5):636-647. doi: 10.1515/cclm-2016-0467.
microRNAs (miRNAs) are short non-coding RNA molecules that regulate gene expression in eukaryotes. Their differential abundance is indicative or even causative for a variety of pathological processes including cancer or cardiovascular disorders. Due to their important biological function, miRNAs represent a promising class of novel biomarkers that may be used to diagnose life-threatening diseases, and to monitor disease progression. Further, they may guide treatment selection or dosage of drugs. miRNAs from blood or derived fractions are particularly interesting candidates for routine laboratory applications, as they can be measured in most clinical laboratories already today. This assures a good accessibility of respective tests. Albeit their great potential, miRNA-based diagnostic tests have not made their way yet into the clinical routine, and hence no standardized workflows have been established to measure miRNAs for patients' benefit. In this review we summarize the detection technologies and workflow options that exist to measure miRNAs, and we describe the advantages and disadvantages of each of these options. Moreover, we also provide a perspective on data analysis aspects that are vital for translation of raw data into actionable diagnostic test results.
微小RNA(miRNA)是一类短链非编码RNA分子,可调控真核生物中的基因表达。它们丰度的差异表明甚至导致包括癌症或心血管疾病在内的多种病理过程。由于其重要的生物学功能,miRNA是一类很有前景的新型生物标志物,可用于诊断危及生命的疾病,并监测疾病进展。此外,它们还可以指导治疗选择或药物剂量。血液或衍生组分中的miRNA是常规实验室应用特别感兴趣的候选物,因为如今在大多数临床实验室中都可以对其进行检测。这确保了相应检测的良好可及性。尽管miRNA具有巨大潜力,但基于miRNA的诊断测试尚未进入临床常规应用,因此尚未建立标准化的工作流程来为患者测量miRNA以造福患者。在本综述中,我们总结了用于测量miRNA的现有检测技术和工作流程选项,并描述了每种选项的优缺点。此外,我们还对数据分析方面提供了一个观点,这些方面对于将原始数据转化为可操作的诊断测试结果至关重要。