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用于鉴定锥虫种类的新型分子工具。

New molecular tools for the identification of trypanosome species.

作者信息

Adams E R, Hamilton P B

机构信息

School of Biological Sciences, University of Bristol, Bristol, BS8 1UG, UK.

出版信息

Future Microbiol. 2008 Apr;3(2):167-76. doi: 10.2217/17460913.3.2.167.

Abstract

Trypanosomes are the causative agents of many diseases of medical and veterinary importance, including sleeping sickness and nagana in Africa, and Chagas disease in South America. Accurate identification of trypanosome species is essential, as some species are morphologically indistinguishable, yet differ greatly in their pathogenicity. A range of molecular tools has been developed for identification of species and strains of trypanosomes. PCR, using primer sets designed to amplify a specific DNA fragment from each trypanosome species, is frequently used. More recently, generic systems have been developed that can potentially recognize all trypanosome species, such as amplification of the internal transcribed spacer and fluorescent fragment length barcoding, both of which use interspecies size variation in PCR fragments amplified from the ribosomal RNA locus. Loop-mediated isothermal amplification is a promising technique and is able to detect trypanosomes in blood, serum and cerebrospinal fluid. The advantages of these techniques for high-throughput and sensitive molecular identification will be discussed.

摘要

锥虫是许多具有医学和兽医学重要性疾病的病原体,包括非洲的昏睡病和那加那病,以及南美洲的恰加斯病。准确鉴定锥虫种类至关重要,因为有些种类在形态上难以区分,但致病性却有很大差异。已经开发出一系列分子工具用于鉴定锥虫的种类和菌株。经常使用聚合酶链反应(PCR),它使用设计用于从每种锥虫物种扩增特定DNA片段的引物对。最近,已经开发出了可能识别所有锥虫物种的通用系统,例如内部转录间隔区的扩增和荧光片段长度条形码技术,这两种技术都利用从核糖体RNA基因座扩增的PCR片段中的种间大小差异。环介导等温扩增是一种很有前景的技术,能够检测血液、血清和脑脊液中的锥虫。将讨论这些技术在高通量和灵敏分子鉴定方面的优势。

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