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蛋白质组学:从假设到单一平台上的定量分析。使用离子阱质谱仪开发多反应监测(MRM)分析方法的指南。

Proteomics: from hypothesis to quantitative assay on a single platform. Guidelines for developing MRM assays using ion trap mass spectrometers.

作者信息

Han Bomie, Higgs Richard E

机构信息

Lilly Corporate Center, Drop Code GL54, Indianapolis, IN 46285, USA.

出版信息

Brief Funct Genomic Proteomic. 2008 Sep;7(5):340-54. doi: 10.1093/bfgp/eln032. Epub 2008 Jun 25.

Abstract

High-throughput HPLC-mass spectrometry (HPLC-MS) is routinely used to profile biological samples for potential protein markers of disease, drug efficacy and toxicity. The discovery technology has advanced to the point where translating hypotheses from proteomic profiling studies into clinical use is the bottleneck to realizing the full potential of these approaches. The first step in this translation is the development and analytical validation of a higher throughput assay with improved sensitivity and selectivity relative to typical profiling assays. Multiple reaction monitoring (MRM) assays are an attractive approach for this stage of biomarker development given their improved sensitivity and specificity, the speed at which the assays can be developed and the quantitative nature of the assay. While the profiling assays are performed with ion trap mass spectrometers, MRM assays are traditionally developed in quadrupole-based mass spectrometers. Development of MRM assays from the same instrument used in the profiling analysis enables a seamless and rapid transition from hypothesis generation to validation. This report provides guidelines for rapidly developing an MRM assay using the same mass spectrometry platform used for profiling experiments (typically ion traps) and reviews methodological and analytical validation considerations. The analytical validation guidelines presented are drawn from existing practices on immunological assays and are applicable to any mass spectrometry platform technology.

摘要

高通量高效液相色谱-质谱联用技术(HPLC-MS)常用于分析生物样品,以寻找疾病、药物疗效和毒性方面潜在的蛋白质标志物。该发现技术已发展到一定程度,将蛋白质组分析研究中的假设转化为临床应用成为实现这些方法全部潜力的瓶颈。这种转化的第一步是开发一种通量更高的检测方法,并相对于典型的分析检测方法提高其灵敏度和选择性,同时进行分析验证。多反应监测(MRM)检测方法是生物标志物开发这一阶段的一种有吸引力的方法,因为其灵敏度和特异性更高、检测方法开发速度快且具有定量特性。虽然分析检测是使用离子阱质谱仪进行的,但传统上MRM检测是在基于四极杆的质谱仪中开发的。使用与分析分析相同的仪器开发MRM检测方法,能够实现从假设生成到验证的无缝快速过渡。本报告提供了使用与分析实验相同的质谱平台(通常是离子阱)快速开发MRM检测方法的指南,并回顾了方法学和分析验证方面的注意事项。所提出的分析验证指南源自免疫检测的现有实践,适用于任何质谱平台技术。

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