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下一代测序技术检测 microRNA 生物标志物的方法评估。

Evaluation of methodologies for microRNA biomarker detection by next generation sequencing.

机构信息

a Sobell Department of Neuromuscular Diseases , UCL Institute of Neurology , London , UK.

b Department of Molecular Genetics , Weizmann Institute of Science , Rehovot , Israel.

出版信息

RNA Biol. 2018;15(8):1133-1145. doi: 10.1080/15476286.2018.1514236. Epub 2018 Sep 18.

Abstract

In recent years, microRNAs (miRNAs) in tissues and biofluids have emerged as a new class of promising biomarkers for numerous diseases. Blood-based biomarkers are particularly desirable since serum or plasma is easily accessible and can be sampled repeatedly. To comprehensively explore the biomarker potential of miRNAs, sensitive, accurate and cost-efficient miRNA profiling techniques are required. Next generation sequencing (NGS) is emerging as the preferred method for miRNA profiling; offering high sensitivity, single-nucleotide resolution and the possibility to profile a considerable number of samples in parallel. Despite the excitement about miRNA biomarkers, challenges associated with insufficient characterization of the sequencing library preparation efficacy, precision and method-related quantification bias have not been addressed in detail and are generally underappreciated in the wider research community. Here, we have tested in parallel four commercially available small RNA sequencing kits against a cohort of samples comprised of human plasma, human serum, murine brain tissue and a reference library containing ~ 950 synthetic miRNAs. We discuss the advantages and limits of these methodologies for massive parallel microRNAs profiling. This work can serve as guideline for choosing an adequate library preparation method, based on sensitivity, specificity and accuracy of miRNA quantification, workflow convenience and potential for automation.

摘要

近年来,组织和生物体液中的 microRNAs(miRNAs)已成为众多疾病有前途的新型生物标志物。基于血液的生物标志物特别受欢迎,因为血清或血浆容易获得且可以重复采样。为了全面探索 miRNA 作为生物标志物的潜力,需要灵敏、准确且具有成本效益的 miRNA 分析技术。下一代测序(NGS)正在成为 miRNA 分析的首选方法;它提供了高灵敏度、单核苷酸分辨率以及同时分析大量样本的可能性。尽管 miRNA 生物标志物令人兴奋,但与测序文库制备效率、精度和方法相关的定量偏差的充分特征描述相关的挑战尚未得到详细解决,并且在更广泛的研究界中普遍被低估。在这里,我们针对包含人类血浆、人类血清、鼠脑组织和包含约 950 个合成 miRNA 的参考文库的样本队列,同时测试了四种市售的小 RNA 测序试剂盒。我们讨论了这些方法对于大规模平行 microRNAs 分析的优缺点。这项工作可以作为根据 miRNA 定量的灵敏度、特异性和准确性、工作流程便利性和自动化潜力选择合适的文库制备方法的指南。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e3c0/6161688/564520f2b2b1/krnb-15-08-1514236-g001.jpg

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