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Detection and Characterization of Leishmania (Leishmania) and Leishmania (Viannia) by SYBR Green-Based Real-Time PCR and High Resolution Melt Analysis Targeting Kinetoplast Minicircle DNA

机译:基于SYBR Green的实时荧光定量PCR和针对动子体小圆环DNA的高分辨率熔体分析检测和鉴定利什曼原虫(Leishmania)和利什曼原虫(Viannia)

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摘要

Leishmaniasis is a neglected disease with a broad clinical spectrum which includes asymptomatic infection. A thorough diagnosis, able to distinguish and quantify Leishmania parasites in a clinical sample, constitutes a key step in choosing an appropriate therapy, making an accurate prognosis and performing epidemiological studies. Several molecular techniques have been shown to be effective in the diagnosis of leishmaniasis. In particular, a number of PCR methods have been developed on various target DNA sequences including kinetoplast minicircle constant regions. The first aim of this study was to develop a SYBR green-based qPCR assay for Leishmania (Leishmania) infantum detection and quantification, using kinetoplast minicircle constant region as target. To this end, two assays were compared: the first used previously published primer pairs (qPCR1), whereas the second used a nested primer pairs generating a shorter PCR product (qPCR2). The second aim of this study was to evaluate the possibility to discriminate among subgenera Leishmania (Leishmania) and Leishmania (Viannia) using the qPCR2 assay followed by melting or High Resolution Melt (HRM) analysis. Both assays used in this study showed good sensitivity and specificity, and a good correlation with standard IFAT methods in 62 canine clinical samples. However, the qPCR2 assay allowed to discriminate between Leishmania (Leishmania) and Leishmania (Viannia) subgenera through melting or HRM analysis. In addition to developing assays, we investigated the number and genetic variability of kinetoplast minicircles in the Leishmania (L.) infantum WHO international reference strain (MHOM/TN/80/IPT1), highlighting the presence of minicircle subclasses and sequence heterogeneity. Specifically, the kinetoplast minicircle number per cell was estimated to be 26,566±1,192, while the subclass of minicircles amplifiable by qPCR2 was estimated to be 1,263±115. This heterogeneity, also observed in canine clinical samples, must be taken into account in quantitative PCR-based applications; however, it might also be used to differentiate between Leishmania subgenera.
机译:利什曼病是一种被忽视的疾病,具有广泛的临床范围,包括无症状感染。能够区分和量化临床样本中利什曼原虫寄生虫的彻底诊断是选择合适疗法,进行准确预后和进行流行病学研究的关键步骤。已经显示出几种分子技术可有效地诊断利什曼病。特别地,已经针对包括运动体微圆恒定区的各种靶DNA序列开发了许多PCR方法。这项研究的首要目的是开发一种基于SYBR Green的qPCR检测方法,以动植物体微圆恒定区为靶标,用于婴儿利什曼原虫(Leishmania)的检测和定量。为此,比较了两种检测方法:第一种使用先前发布的引物对(qPCR1),第二种使用嵌套的引物对产生较短的PCR产物(qPCR2)。这项研究的第二个目的是使用qPCR2分析,然后进行熔解或高分辨率熔解(HRM)分析,评估区分Leishmania(Leishmania)和Leishmania(Viannia)亚属的可能性。这项研究中使用的两种检测方法均显示出良好的敏感性和特异性,并且与62种犬科临床样本中的标准IFAT方法具有良好的相关性。然而,通过熔解或HRM分析,qPCR2测定法可以区分利什曼原虫(Leishmania)和利什曼原虫(Viannia)亚属。除了开发检测方法外,我们还研究了婴儿利什曼原虫(L.)WHO WHO国际参考菌株(MHOM / TN / 80 / IPT1)中运动塑料小圆的数量和遗传变异,突出了小圆亚类和序列异质性的存在。具体而言,每个细胞的运动塑料微圆数估计为26,566±1,192,而可通过qPCR2扩增的微圆的亚类估计为1,263±115。在基于定量PCR的应用中也必须考虑到这种异质性(在犬的临床样本中也观察到);但是,它也可以用于区分利什曼原虫亚属。

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