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检测和分型贾第虫的 2 种分子标记物的 DNA 提取和扩增简化方案。

Simplified protocol for DNA extraction and amplification of 2 molecular markers to detect and type Giardia duodenalis.

机构信息

Laboratory of Environmental Parasitology, Department of Basic Health Sciences, State University of Maringá, Maringá, Paraná 87020-900, Brazil.

Laboratory of Environmental Parasitology, Department of Basic Health Sciences, State University of Maringá, Maringá, Paraná 87020-900, Brazil.

出版信息

Diagn Microbiol Infect Dis. 2014 Jan;78(1):53-8. doi: 10.1016/j.diagmicrobio.2013.09.008. Epub 2013 Sep 28.

Abstract

We evaluated the ability of 3 kits: QIAmp® DNA stool mini kit (Qiagen, Hilden, Germany), PureLink PCR Purification®, and PureLink™ Genomic DNA® (Invitrogen, Carlsbad, CA, USA) for DNA extraction, and of 2 molecular markers (heat shock protein [HSP] and β-giardin genes) for detection and genotyping of Giardia duodenalis stool samples. The detection and typing limits of the markers were determined by the DNA concentration of trophozoites and cysts and were tested in 26 clinical samples. Of the 3 kits tested, the PureLink PCR Purification gave the best results when tested with clinical samples with low, intermediate, and high numbers of cysts. The DNA extracted from trophozoites and cysts was diluted successively in 1:2 ratios until it was no longer possible to observe the amplified product in polyacrylamide gel. Similarly, a suspension of cysts was diluted until no cysts were observed, and then the DNA was extracted. The amount of DNA of trophozoites and cysts for the typing of the parasite was smaller for the HSP marker than for β-giardin. Combined use of both markers allowed us to detect DNA of Giardia in parasitologically positive samples in a higher percentage (75%) than the results obtained for each marker and in 1 parasitologically negative sample, indicating that this combination increased the potential to accurately detect and genotype this parasite. We also concluded that the HSP marker has a higher limit of detection and typing than the β-giardin marker and that the DNA extraction method tested for G. duodenalis is simpler and more efficient than those that are currently in use and can be applied on a large scale.

摘要

我们评估了 3 种试剂盒:Qiagen 的 QIAmp® DNA 粪便迷你试剂盒(德国希尔德恩)、PureLink PCR 纯化试剂盒和 PureLink™ Genomic DNA®(美国加利福尼亚州卡尔斯巴德的 Invitrogen)用于 DNA 提取,以及 2 种分子标记物(热休克蛋白 [HSP]和β-微管蛋白基因)用于检测和基因分型粪便样品中的贾第虫。通过滋养体和囊包的 DNA 浓度确定了标记物的检测和分型界限,并在 26 个临床样本中进行了测试。在所测试的 3 种试剂盒中,PureLink PCR 纯化试剂盒在测试含有低、中、高数量囊包的临床样本时效果最佳。从滋养体和囊包中提取的 DNA 依次以 1:2 的比例稀释,直到在聚丙烯酰胺凝胶中无法观察到扩增产物。同样,囊包的混悬液被稀释,直到无法观察到囊包,然后提取 DNA。对于寄生虫的分型,滋养体和囊包的 DNA 量对于 HSP 标记物而言比β-微管蛋白标记物小。同时使用这两种标记物,我们能够以比每个标记物更高的百分比(75%)检测到寄生虫学阳性样本中的贾第虫 DNA,并且在 1 个寄生虫学阴性样本中检测到,表明这种组合增加了准确检测和分型这种寄生虫的潜力。我们还得出结论,HSP 标记物的检测和分型限高于β-微管蛋白标记物,并且用于检测 G. duodenalis 的 DNA 提取方法比目前使用的方法更简单、更高效,并且可以大规模应用。

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