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[蛋白质微阵列与个性化医疗]

[Protein microarrays and personalized medicine].

作者信息

Yu Xiabo, Schneiderhan-Marra Nicole, Joos Thomas O

机构信息

NMI Natural and Medical Science Institute at the University of Tuebingen, Reutlingen, Markwiesenstr. 55, 72770 Reutlingen, Germany.

出版信息

Ann Biol Clin (Paris). 2011 Jan-Feb;69(1):17-29. doi: 10.1684/abc.2010.0512.

Abstract

Over the last 10 years, DNA microarrays have achieved a robust analytical performance, enabling their use for analyzing the whole transcriptome or for screening thousands of single-nucleotide polymorphisms in a single experiment. DNA microarrays allow scientists to correlate gene expression signatures with disease progression, to screen for disease-specific mutations, and to treat patients according to their individual genetic profiles; however, the real key is proteins and their manifold functions. It is necessary to achieve a greater understanding of not only protein function and abundance but also their role in the development of diseases. Protein concentrations have been shown to reflect the physiological and pathologic state of an organ, tissue, or cells far more directly than DNA, and proteins can be profiled effectively with protein microarrays, which require only a small amount of sample material. Protein microarrays have become wellestablished tools in basic and applied research, and the first products have already entered the in vitro diagnostics market. This review focuses on protein microarray applications for biomarker discovery and validation, disease diagnosis, and use within the area of personalized medicine. Protein microarrays have proved to be reliable research tools in screening for a multitude of parameters with only a minimal quantity of sample and have enormous potential in applications for diagnostic and personalized medicine.

摘要

在过去十年中,DNA微阵列已经具备了强大的分析性能,使其能够用于在单个实验中分析整个转录组或筛选数千个单核苷酸多态性。DNA微阵列使科学家能够将基因表达特征与疾病进展相关联,筛选疾病特异性突变,并根据个体遗传特征治疗患者;然而,真正的关键是蛋白质及其多种功能。不仅有必要更深入地了解蛋白质的功能、丰度,还需了解它们在疾病发展中的作用。研究表明,蛋白质浓度比DNA更能直接反映器官、组织或细胞的生理和病理状态,并且蛋白质微阵列能够有效地对蛋白质进行分析,而蛋白质微阵列仅需要少量样本材料。蛋白质微阵列已成为基础研究和应用研究中成熟的工具,首批产品已经进入体外诊断市场。本综述重点关注蛋白质微阵列在生物标志物发现与验证、疾病诊断以及个性化医疗领域中的应用。蛋白质微阵列已被证明是可靠的研究工具,能够仅用极少量样本筛选众多参数,在诊断和个性化医疗应用中具有巨大潜力。

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