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用于荧光核酸杂交探针的荧光团和猝灭剂对的选择。

Selection of fluorophore and quencher pairs for fluorescent nucleic acid hybridization probes.

作者信息

Marras Salvatore A E

机构信息

Department of Molecular Genetics, Public Health Research Institute, Newark, NJ, USA.

出版信息

Methods Mol Biol. 2006;335:3-16. doi: 10.1385/1-59745-069-3:3.

Abstract

With the introduction of simple and relatively inexpensive methods for labeling nucleic acids with nonradioactive labels, doors have been opened that enable nucleic acid hybridization probes to be used for research and development, as well as for clinical diagnostic applications. The use of fluorescent hybridization probes that generate a fluorescence signal only when they bind to their target enables real-time monitoring of nucleic acid amplification assays. The use of hybridization probes that bind to the amplification products in real-time markedly improves the ability to obtain quantitative results. Furthermore, real-time nucleic acid amplification assays can be carried out in sealed tubes, eliminating carryover contamination. Because fluorescent hybridization probes are available in a wide range of colors, multiple hybridization probes, each designed for the detection of a different nucleic acid sequence and each labeled with a differently colored fluorophore, can be added to the same nucleic acid amplification reaction, enabling the development of high-throughput multiplex assays. It is therefore important to carefully select the labels of hybridization probes, based on the type of hybridization probe used in the assay, the number of targets to be detected, and the type of apparatus available to perform the assay. This chapter outlines different aspects of choosing appropriate labels for the different types of fluorescent hybridization probes used with different types of spectrofluorometric thermal cyclers.

摘要

随着用非放射性标记物标记核酸的简单且相对廉价方法的引入,开启了使核酸杂交探针可用于研发以及临床诊断应用的大门。仅在与靶标结合时才产生荧光信号的荧光杂交探针的使用,使得能够对核酸扩增测定进行实时监测。实时与扩增产物结合的杂交探针的使用显著提高了获得定量结果的能力。此外,实时核酸扩增测定可在密封管中进行,消除了交叉污染。由于荧光杂交探针有多种颜色可供选择,因此可以将多个杂交探针添加到同一核酸扩增反应中,每个杂交探针设计用于检测不同的核酸序列,并分别用不同颜色的荧光团标记,从而实现高通量多重测定的开发。因此,根据测定中使用的杂交探针类型、要检测的靶标数量以及可用于进行测定的仪器类型,仔细选择杂交探针的标记非常重要。本章概述了为与不同类型的荧光分光热循环仪一起使用的不同类型荧光杂交探针选择合适标记的不同方面。

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