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Epidemiological survey on Cryptosporidium in an Equine Perinatology Unit

机译:马围病学部门隐孢子虫的流行病学调查

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The present study aims to evaluate the prevalence, pattern of spread and risk factors for the transmission of cryptosporidiosis in foals and mares hospitalized in a University Equine Perinatology Unit, where a new subtype family of Cryptosporidium horse genotype was described by Caffara et al. (2013). Mares (36) and foals (37) hospitalized during the 2012 foaling season were included. Multiple sampling from each animal was performed (a total of 305 stool samples were collected). One hundred and eleven environmental samples (gauze swabs) were also collected before and after the breeding season. Fourteen foals were found positive for Cryptosporidium spp. by PCR in at least one sample; a total of 35 foal stool specimens were confirmed for the presence of the protozoa. Instead none of the stool specimens from mares were found positive. PCR-RFLP analysis shows Cryptosporidium parvum in 5 stool samples and Cryptosporidium horse genotype in 21. In 9 specimens, from 4 different foals, the profile was suggestive for a mixed infection. The subtyping at gp60 locus showed 2 strains as members of the subtype family lid and six of the subfamily Ha of C. parvum. Twenty isolates were identified as Cryptosporidium horse genotype subtype VIaA15G4. Five gauze swabs collected from the walls of the boxes where the animals were hosted out of 111 environmental samples examined were PCR positive for Cryptosporidium spp. Cryptosporidium parvum was detected in one sample collected before the foaling season, while Cryptosporidium horse genotype profile was observed in 4 wall samples collected at the end of the 2012 foaling season. The prevalence observed in foals (37.8%) was higher than that reported in other studies. These features and the diffusion of the same genotype point out as the EPU, where critically ill foals are hospitalized, can support the spread of cryptosporidiosis. Therefore, the manual tasks and the activities carried out in these facilities are of great importance, as they might favor the diffusion of the infection. (C) 2015 Elsevier B.V. All rights reserved.
机译:本研究旨在评估在大学马围病学部门住院的驹和母马中隐孢子虫病传播的患病率,传播方式和危险因素,Caffara等人描述了隐孢子虫马基因型的一个新亚型家族。 (2013)。包括2012年马驹季节住院的Mares(36)和小马驹(37)。从每只动物进行多次采样(总共收集了305个粪便样品)。在繁殖季节之前和之后还收集了111个环境样品(纱布)。发现十四只小马驹的隐孢子虫呈阳性。通过PCR在至少一个样品中;总共确认了35个小马粪便标本中是否存在原生动物。相反,没有发现母马的粪便标本呈阳性。 PCR-RFLP分析显示5个粪便样品中有小隐孢子虫,而21个样品中有隐孢子虫马基因型。在9个标本中(来自4种不同的小马驹),该特征提示混合感染。在gp60位点的亚型显示2个菌株是亚型家族盖的成员,而C. parvum的亚家族Ha则有6个。二十种分离物被鉴定为隐孢子虫马基因型VIaA15G4。从所检查的111个环境样品中收容动物的盒子的壁中收集了5条纱布拭子,它们的隐孢子虫属PCR呈阳性。在产驹季节之前收集的一个样品中检测到小隐孢子虫,而在2012年产驹季节结束时收集的4个壁样品中观察到了隐孢子虫的基因型。小马驹的患病率(37.8%)高于其他研究报告的患病率。这些特征和相同基因型的扩散表明,重症小马驹入院的EPU可以支持隐孢子虫病的传播。因此,在这些设施中进行的手动任务和活动非常重要,因为它们可能有助于传播感染。 (C)2015 Elsevier B.V.保留所有权利。

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