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用于过敏性疾病诊断的蛋白质微阵列:现状与未来发展

Protein microarrays for the diagnosis of allergic diseases: state-of-the-art and future development.

作者信息

Harwanegg Christian, Hiller Reinhard

机构信息

VBC Genomics Bioscience Research LLC, Vienna, Austria.

出版信息

Clin Chem Lab Med. 2005;43(12):1321-6. doi: 10.1515/CCLM.2005.226.

Abstract

In the emerging field of Functional Proteomics, protein microarrays are considered to be one of the most promising tools for the simultaneous analysis of the a) abundance, b) function, and c) interaction of proteins on a system-wide scale. Resting on the technological grounds of widely used DNA biochips, the great power of microarray-based miniature solid-phase immunoassays lies in their potential to investigate in parallel large numbers of analyte pairs in a variety of biological samples. Consequently, this has fueled aspirations that protein microarrays may serve as tools for the high-throughput functional investigation of complete proteomes and, moreover, that they will develop into promising candidates for innovative in-vitro diagnostic (IVD) applications. To date, published examples of protein microarrays for IVD purposes have included tests for allergy, autoimmune and infectious diseases. Here, we discuss recent advancements in the development of protein microarrays for the profiling of IgE antibodies in the diagnosis of Type 1-related allergic diseases.

摘要

在新兴的功能蛋白质组学领域,蛋白质微阵列被认为是在全系统范围内同时分析蛋白质的以下方面的最有前景的工具之一:a) 丰度、b) 功能以及 c) 相互作用。基于广泛使用的DNA生物芯片的技术基础,基于微阵列的微型固相免疫测定的强大功能在于其有潜力在各种生物样品中并行研究大量分析物对。因此,这激发了人们的期望,即蛋白质微阵列可作为完整蛋白质组高通量功能研究的工具,此外,它们将发展成为创新体外诊断(IVD)应用的有前途的候选者。迄今为止,已发表的用于IVD目的的蛋白质微阵列实例包括过敏、自身免疫和传染病检测。在此,我们讨论用于1型相关过敏性疾病诊断中IgE抗体谱分析的蛋白质微阵列开发的最新进展。

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