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Quantitative Flow Cytometric Evaluation of MaximalCryptosporidium parvum Oocyst Infectivity in a Neonate Mouse Model

机译:新生小鼠模型中最大隐孢子虫卵囊感染性的定量流式细胞术评估

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The importance of waterborne transmission of Cryptosporidium parvum to humans has been highlighted by recent outbreaks of cryptosporidiosis. The first step in a survey of contaminated water currently consists of counting C. parvum oocysts. Data suggest that an accurate risk evaluation should include a determination of viability and infectivity of counted oocysts in water. In this study, oocyst infectivity was addressed by using a suckling mouse model. Four-day-old NMRI (Naval Medical Research Institute) mice were inoculated per os with 1 to 1,000 oocysts in saline. Seven days later, the number of oocysts present in the entire small intestine was counted by flow cytometry using a fluorescent, oocyst-specific monoclonal antibody. The number of intestinal oocysts was directly related to the number of inoculated oocysts. For each dose group, infectivity of oocysts, expressed as the percentage of infected animals, was 100% for challenge doses between 25 and 1,000 oocysts and about 70% for doses ranging from 1 to 10 oocysts/animal. Immunofluorescent flow cytometry was useful in enhancing the detection sensitivity in the highly susceptible NMRI suckling mouse model and so was determined to be suitable for the evaluation of maximal infectivity risk.
机译:最近隐孢子虫病的爆发凸显了隐孢子虫通过水传播给人类的重要性。目前,对污染水进行调查的第一步是对 C进行计数。小卵囊。数据表明,准确的风险评估应包括确定水中计数的卵囊的生存力和感染性。在这项研究中,通过使用乳鼠模型解决了卵囊的感染性。对四日龄的NMRI(海军医学研究所)小鼠分别经1至1,000个卵囊在盐水中接种。 7天后,使用荧光的,卵囊特异性的单克隆抗体通过流式细胞术计数存在于整个小肠中的卵囊的数量。肠道卵囊的数量与接种卵囊的数量直接相关。对于每个剂量组,卵囊的感染性(以感染动物的百分比表示)对于25至1,000卵囊之间的激发剂量为100%,对于1至10卵囊/动物的剂量为70%。免疫荧光流式细胞术可用于增强高度敏感的NMRI乳鼠模型的检测灵敏度,因此被确定为适合最大感染风险的评估。

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