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用于临床实验室的蛋白质生物芯片系统。

Protein biochip systems for the clinical laboratory.

作者信息

Dupuy Anne Marie, Lehmann Sylvain, Cristol Jean Paul

机构信息

Department of Biochemistry, Lapeyronie and St Eloi Hospital, Montpellier, France.

出版信息

Clin Chem Lab Med. 2005;43(12):1291-302. doi: 10.1515/CCLM.2005.223.

DOI:10.1515/CCLM.2005.223
PMID:16309364
Abstract

Classical methods of protein analysis such as electrophoresis, ELISA and liquid chromatography are generally time-consuming, labor-intensive and lack high-throughput capacity. In addition, all existing methods used to measure proteins necessitate multiple division of the original sample and individual tests carried out for each substance, with an associated cost for each test. The chip system allows several tests to be performed simultaneously without dividing the original patient sample. This system facilitates the development of multiplexed assays that simultaneously measure many different analytes in a small sample volume. These emerging technologies fall into two categories: 1) spotted array-based tools, and 2) microfluidic-based tools. Miniaturized and multiplexed immunoassays allow a great deal of information to be obtained from a single sample. These analytical systems are referred to as "lab-on-a-chip" devices. This article presents current trends and advances in miniaturized multiplexed immunoassay technologies, reviewing different systems from research to point-of-care assays. We focus on a subset of chip-based assays that may be used in a clinical laboratory and are directly applicable for biomedical diagnosis. Recent advances in biochip assays combine the power of miniaturization, microfluidics, micro- to nanoparticles, and quantification. A number of applications are just beginning to be explored. The power of biochip assays offers great promise for point-of-care clinical testing and monitoring of many important analytes.

摘要

蛋白质分析的传统方法,如电泳、酶联免疫吸附测定(ELISA)和液相色谱法,通常耗时、费力且缺乏高通量能力。此外,所有用于测量蛋白质的现有方法都需要对原始样品进行多次分割,并针对每种物质进行单独测试,每次测试都有相关成本。芯片系统允许在不分割原始患者样品的情况下同时进行多项测试。该系统有助于开发多重检测方法,可在小体积样品中同时测量多种不同的分析物。这些新兴技术分为两类:1)基于点阵的工具,以及2)基于微流控的工具。小型化和多重免疫测定能够从单个样品中获取大量信息。这些分析系统被称为“芯片实验室”设备。本文介绍了小型化多重免疫测定技术的当前趋势和进展,回顾了从研究到即时检测的不同系统。我们重点关注一类可用于临床实验室且直接适用于生物医学诊断的基于芯片的检测方法。生物芯片检测的最新进展结合了小型化、微流控、微米到纳米颗粒以及定量分析的优势。许多应用才刚刚开始探索。生物芯片检测的优势为即时临床检测和监测许多重要分析物带来了巨大希望。

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