两种DNA提取方法对粪便隐孢子虫卵囊PCR检测的敏感性。

Gabriella Lindergard, Daryl V Nydam, Susan E Wade, Stephanie L Schaaf, Hussni O Mohammed
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引用次数: 10

摘要

背景:发展灵敏、准确的诊断方法是实施具有成本效益的人畜共患原虫干预策略的基础。我们进行了一项研究,以评估PCR方法检测牛粪便中隐孢子虫卵囊的准确性。方法:在粪样中加入不同数量的卵囊,确定该方法的检出限。评估了两种提取DNA的方法:玻璃珠和液氮冷冻解冻。建立了一种针对隐孢子虫SSU rRNA和TRAP-C2基因的巢式PCR方法。使用kappa系数对SSU rRNA和TRAP-C2位点诊断隐孢子虫的一致性进行量化。结果:与冻融法相比,玻璃珠法是一种更好的提取隐孢子虫卵囊DNA的方法(灵敏度分别为83%和100%)。玻璃珠和冻融法的检出限较低,分别为1和10个卵囊/g。先前通过浮选-浓度和酶联免疫吸附测定方法分类为小隐孢子虫阴性的现场样品中有46%显示了PCR方案的DNA。结论:SSU rRNA引物比TRAP-C2基因引物更容易扩增,是检测小隐孢子虫卵囊的首选方法。
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The sensitivity of PCR detection of Cryptosporidium oocysts in fecal samples using two DNA extraction methods.

Background: The implementation of cost-effective intervention strategies for zoonotic protozoa relies on the development of sensitive and accurate diagnostic methods. We carried out a study to evaluate the accuracy of a PCR method for the detection of Cryptosporidium spp. oocysts in fecal samples from cattle.

Methods: Fecal samples were spiked with different numbers of oocysts and the limit of detection of the method was determined. Two methods of DNA extraction were assessed: glass beads and freeze-thawing using liquid nitrogen. A nested PCR approach was developed targeting the Cryptosporidium SSU rRNA and TRAP-C2 genes. Agreement between the diagnosis of Cryptosporidium spp. at the SSU rRNA and TRAP-C2 loci was quantified using the kappa-coefficient.

Results: Compared with the freeze-thawing method, the glass beads method was found to be a better way of extracting DNA from Cryptosporidium oocysts (sensitivities were 83 and 100%, respectively). The limits of detection for glass beads and freeze-thaw were low, 1 and 10 oocyst/g fecal samples, respectively. Forty-six percent of the field samples previously classified as negative for Cryptosporidium parvum by the flotation-concentration and enzyme-linked immunosorbent assay methods showed DNA with the PCR protocol.

Conclusion: Primers for SSU rRNA are more successful in producing an amplification than primers for the TRAP-C2 gene which makes the former PCR protocol the approach of choice for detecting Cryptosporidium parvum oocysts in field samples.

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