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抗体阵列:癌症中的技术考量与临床应用

Antibody arrays: technical considerations and clinical applications in cancer.

作者信息

Sanchez-Carbayo Marta

机构信息

Tumor Markers Group, Centro Nacional de Investigaciones Oncologicas, Madrid, Spain.

出版信息

Clin Chem. 2006 Sep;52(9):1651-9. doi: 10.1373/clinchem.2005.059592. Epub 2006 Jun 29.

Abstract

Antibody arrays represent one of the high-throughput techniques that are able to detect multiple proteins simultaneously. One of the main advantages of this technology over other proteomic approaches is that the identities of the measured proteins are known or can be readily characterized, allowing a biological interpretation of the results. Features such as lower sample volume and antibody concentration requirements, higher format versatility, and reproducibility support the increasing use of antibody arrays in cancer research. Clinical applications include disease marker discovery for diagnosis, prognosis, and drug response, characterization of signaling and protein pathways, and modifications associated with disease development and progression. This report presents an overview of technical issues of the main antibody array formats and various applications in cancer research. Antibody arrays are high-throughput tools that improve the functional characterization of molecular bases for disease. Furthermore, identification and validation of protein expression patterns, characteristic of cancer progression, and tumor subtypes may intervene and improve tailored therapies in the clinical management of cancer patients.

摘要

抗体阵列是能够同时检测多种蛋白质的高通量技术之一。与其他蛋白质组学方法相比,这项技术的主要优势之一在于,所检测蛋白质的身份是已知的,或者可以很容易地进行表征,从而能够对结果进行生物学解释。诸如对样本体积和抗体浓度要求较低、形式通用性较高以及可重复性等特点,支持了抗体阵列在癌症研究中越来越广泛的应用。临床应用包括发现用于诊断、预后和药物反应的疾病标志物、表征信号传导和蛋白质途径,以及与疾病发展和进展相关的修饰。本报告概述了主要抗体阵列形式的技术问题以及在癌症研究中的各种应用。抗体阵列是高通量工具,可改善对疾病分子基础的功能表征。此外,识别和验证癌症进展和肿瘤亚型所特有的蛋白质表达模式,可能会干预并改善癌症患者临床管理中的个性化治疗。

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