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Cryptosporidium Propidium Monoazide-PCR a Molecular Biology-Based Technique for Genotyping of Viable Cryptosporidium Oocysts

机译:隐孢子虫单叠氮化物-PCR一种基于分子生物学的可行隐孢子虫卵囊基因分型技术。

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摘要

Cryptosporidium is an important waterborne protozoan parasite that can cause severe diarrhea and death in the immunocompromised. The current methods used to monitor for Cryptosporidium oocysts in water are the microscopy-based USEPA methods 1622 and 1623. These methods assess total levels of oocysts in source waters, but do not determine oocyst viability or genotype. Recently, propidium monoazide (PMA) has been used in conjunction with molecular diagnostic tools to identify species and assess the viability of bacteria. The goal of this study was the development of a Cryptosporidium PMA-PCR (CryptoPMA-PCR) assay that includes PMA treatment prior to PCR analysis in order to prevent the amplification of DNA from dead oocysts. The results demonstrated that PMA penetrates only dead oocysts and blocks amplification of their DNA. The CryptoPMA-PCR assay can also specifically detect live oocysts within a mixed population of live and dead oocysts. More importantly, live oocysts, not dead oocysts, were detected in raw waste or surface water samples spiked with Cryptosporidium oocysts. This proof-of-concept study is the first to demonstrate the use of PMA for pre-PCR treatment of Cryptosporidium oocysts. The CryptoPMA-PCR assay is an attractive approach to specifically detect and genotype viable Cryptosporidium oocysts in the water, which is critical for human health risk assessment.
机译:隐孢子虫是一种重要的水生原生动物寄生虫,在免疫功能低下会引起严重的腹泻和死亡。当前用于监测水中隐孢子虫卵囊的方法是基于显微镜的USEPA方法1622和1623。这些方法评估来源水中卵囊的总水平,但不能确定卵囊的生存力或基因型。最近,单叠氮化丙锭(PMA)已与分子诊断工具结合使用,以鉴定物种并评估细菌的生存能力。这项研究的目的是开发一种隐孢子虫PMA-PCR(CryptoPMA-PCR)分析方法,该方法包括在PCR分析之前进行PMA处理,以防止死卵囊中的DNA扩增。结果表明,PMA仅穿透死卵囊并阻止其DNA扩增。 CryptoPMA-PCR测定法还可以特异性地检测活和死卵囊的混合种群中的活卵囊。更重要的是,在掺有隐孢子虫卵囊的原废水或地表水样品中检测到了活卵囊,而不是死卵囊。这项概念验证研究首次证明了将PMA用于隐孢子虫卵囊的PCR预处理。 CryptoPMA-PCR测定法是一种有吸引力的方法,可以特异性地检测水中的隐孢子虫卵囊并对其进行基因分型,这对于人类健康风险评估至关重要。

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