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蛋白质的超灵敏检测方法。

Ultrasensitive assays for proteins.

作者信息

Zhang Hongquan, Zhao Qiang, Li Xing-Fang, Le X Chris

机构信息

Analytical and Environmental Toxicology, Department of Laboratory Medicine and Pathology, Faculty of Medicine and Dentistry, University of Alberta, Edmonton, Alberta, Canada T6G 2G3.

出版信息

Analyst. 2007 Aug;132(8):724-37. doi: 10.1039/b704256f. Epub 2007 Jun 4.

Abstract

Proteins are essential components of organisms and are involved in a wide range of biological functions. There are increasing demands for ultra-sensitive protein detection, because many important protein biomarkers are present at ultra-low levels, especially during the early stages of disease. Measuring proteins at low levels is also crucial for investigations of the protein synthesis and functions in biological systems. In this review, we summarize the recent developments of novel technology enabling ultrasensitive protein detection. We focus on two groups of techniques that involve either polymerase amplification of affinity DNA probes or signal amplification by the use of nano-/micro-materials. The polymerase-based amplification of affinity DNA probes indirectly improves the sensitivity of protein detection by increasing the number of detection molecules. The use of nano-/micro-materials conjugated to affinity probes enhances the measurement signals by using the unique electrical, optical, and catalytic properties of these novel materials. This review describes the basic principles, performances, applications, merits, and limitations of these techniques.

摘要

蛋白质是生物体的重要组成部分,参与广泛的生物学功能。对超灵敏蛋白质检测的需求日益增加,因为许多重要的蛋白质生物标志物以超低水平存在,尤其是在疾病的早期阶段。在生物系统中测量低水平的蛋白质对于蛋白质合成和功能的研究也至关重要。在这篇综述中,我们总结了实现超灵敏蛋白质检测的新技术的最新进展。我们重点关注两类技术,一类涉及亲和DNA探针的聚合酶扩增,另一类是通过使用纳米/微米材料进行信号放大。基于聚合酶的亲和DNA探针扩增通过增加检测分子的数量间接提高了蛋白质检测的灵敏度。与亲和探针结合的纳米/微米材料的使用通过利用这些新型材料独特的电学、光学和催化特性增强了测量信号。这篇综述描述了这些技术的基本原理、性能、应用、优点和局限性。

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