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A real-time PCR assay to estimate Leishmania chagasi load in its natural sand fly vector Lutzomyia longipalpis

机译:实时PCR测定天然沙蝇载体Lutzomyia longipalpis中的利什曼原虫的数量

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摘要

Leishmania chagasi, transmitted mainly by Lutzomyia longipalpis sand flies, causes visceral leishmaniasis and atypical cutaneous leishmaniasis in Latin America. Successful vector control depends upon determining vectorial capacity and understanding Leishmania transmission by sand flies. As microscopic detection of Leishmania in dissected sand fly guts is laborious and time-consuming, highly specific, sensitive, rapid and robust Leishmania PCR assays have attracted epidemiologists’ attention. Real-time PCR is faster than qualitative PCR and yields quantitative data amenable to statistical analyses. A highly reproducible Leishmania DNA polymerase gene-based TaqMan real-time PCR assay was adapted to quantify Leishmania in sand flies, showing intra-assay and inter-assay coefficient variations lower than 1 and 1.7%, respectively, and sensitivity to 10 pg Leishmania DNA (∼120 parasites) in as much as 100 ng sand fly DNA. Data obtained for experimentally infected sand flies yielded parasite loads within the range of counts obtained by microscopy for the same sand fly cohort or that were around five times higher than microscopy counts, depending on the method used for data analysis. These results highlight the potential of quantitative PCR for Leishmania transmission studies, and the need to understand factors affecting its sensitivity and specificity.
机译:利什曼原虫恰加斯病主要通过长白僵菌传播,在拉丁美洲引起内脏利什曼病和非典型性皮肤利什曼病。成功的媒介控制取决于确定媒介能力和了解沙蝇传播利什曼原虫。由于在显微镜下检测沙蝇肠内的利什曼原虫是费力且费时的,因此高度特异性,灵敏,快速且稳定的利什曼原虫PCR检测法引起了流行病学家的关注。实时PCR比定性PCR更快,并产生适合统计分析的定量数据。基于高度可重复性的利什曼原虫DNA聚合酶基因的TaqMan实时PCR分析适用于定量沙蝇中的利什曼原虫,显示批内和批间系数变异分别低于1和1.7%,并且对10pg利什曼原虫DNA敏感(约120种寄生虫)中的100 ng沙蝇DNA。对于相同的沙蝇队列,通过实验感染的沙蝇获得的数据产生的寄生虫负载在显微镜计数范围内,或者高出显微镜计数约五倍,具体取决于用于数据分析的方法。这些结果突出了定量PCR在利什曼原虫传播研究中的潜力,以及需要了解影响其敏感性和特异性的因素。

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