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迈向标准化尿液蛋白质组分析方法学。

Toward a standardized urine proteome analysis methodology.

机构信息

DECanBio consortium, France.

出版信息

Proteomics. 2011 Mar;11(6):1160-71. doi: 10.1002/pmic.201000566. Epub 2011 Feb 16.

Abstract

Urine is an easily accessible bodily fluid particularly suited for the routine clinical analysis of disease biomarkers. Actually, the urinary proteome is more diverse than anticipated a decade ago. Hence, significant analytical and practical issues of urine proteomics such as sample collection and preparation have emerged, in particular for large-scale studies. We have undertaken a systematic study to define standardized and integrated analytical protocols for a biomarker development pipeline, employing two LC-MS analytical platforms, namely accurate mass and time tags and selected reaction monitoring, for the discovery and verification phase, respectively. Urine samples collected from hospital patients were processed using four different protocols, which were evaluated and compared on both analytical platforms. Addition of internal standards at various stages of sample processing allowed the estimation of protein extraction yields and the absolute quantification of selected urinary proteins. Reproducibility of the entire process and dynamic range of quantification were also evaluated. Organic solvent precipitation followed by in-solution digestion provided the best performances and was thus selected as the standard method common to the discovery and verification phases. Finally, we applied this protocol for platforms' cross-validation and obtained excellent consistency between urinary protein concentration estimates by both analytical methods performed in parallel in two laboratories.

摘要

尿液是一种易于获取的体液,特别适合用于常规的临床疾病生物标志物分析。实际上,十年前人们对尿液蛋白质组的认识还远远不够,现在看来,尿液蛋白质组要比预期的更加多样化。因此,尿液蛋白质组学出现了一些重大的分析和实际问题,例如样本收集和准备,特别是对于大规模研究而言。我们进行了一项系统研究,为生物标志物开发管道定义了标准化和集成的分析方案,分别使用两种 LC-MS 分析平台,即精确质量和时间标签以及选择反应监测,用于发现和验证阶段。从医院患者收集的尿液样本使用四种不同的方案进行处理,在两种分析平台上对其进行了评估和比较。在样品处理的各个阶段添加内标,允许估计蛋白质提取产率并对选定的尿液蛋白质进行绝对定量。还评估了整个过程的重现性和定量的动态范围。有机溶剂沉淀后再进行溶液消化提供了最佳的性能,因此被选为发现和验证阶段的标准方法。最后,我们应用该方案对平台进行了交叉验证,并在两个实验室中平行进行的两种分析方法对尿液蛋白质浓度的估计结果具有极好的一致性。

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