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使用抗体微阵列的高通量蛋白质组学:最新进展

High-throughput proteomics using antibody microarrays: an update.

作者信息

Borrebaeck Carl A K, Wingren Christer

机构信息

Lund University, Department of Immunotechnology & CREATE Health, BMC D13, SE-221 84 Lund, Sweden.

出版信息

Expert Rev Mol Diagn. 2007 Sep;7(5):673-86. doi: 10.1586/14737159.7.5.673.

Abstract

Antibody-based microarrays are a rapidly emerging technology that has advanced from the first proof-of-concept studies to demanding serum protein profiling applications during recent years, displaying great promise within disease proteomics. Miniaturized micro- and nanoarrays can be fabricated with an almost infinite number of antibodies carrying the desired specificities. While consuming only minute amounts of reagents, multiplexed and ultrasensitive assays can be performed targeting high- as well as low-abundance analytes in complex nonfractionated proteomes. The microarray images generated can then be converted into protein expression profiles or protein atlases, revealing a detailed composition of the sample. The technology will provide unique opportunities for fields such as disease diagnostics, biomarker discovery, patient stratification, predicting disease recurrence and drug target discovery. This review describes an update of high-throughput proteomics, using antibody-based microarrays, focusing on key technological advances and novel applications that have emerged over the last 3 years.

摘要

基于抗体的微阵列是一项迅速兴起的技术,近年来已从最初的概念验证研究发展到要求苛刻的血清蛋白质谱分析应用,在疾病蛋白质组学领域展现出巨大潜力。可以制造出带有几乎无限数量具有所需特异性抗体的小型化微阵列和纳米阵列。由于仅消耗微量试剂,因此可以针对复杂未分级蛋白质组中的高丰度和低丰度分析物进行多重和超灵敏检测。然后可以将生成的微阵列图像转换为蛋白质表达谱或蛋白质图谱,揭示样品的详细组成。该技术将为疾病诊断、生物标志物发现、患者分层、预测疾病复发和药物靶点发现等领域提供独特的机会。本综述介绍了基于抗体的微阵列高通量蛋白质组学的最新进展,重点关注过去3年中出现的关键技术进步和新应用。

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