Campero L M, Venturini M C, Moore D P, Massola L, Lagomarsino H, García B, Bacigalupe D, Rambeaud M, Pardini L, Leunda M R, Schares G, Campero C M
National Scientific and Technical Research Council (CONICET), Buenos Aires CP C1033AAJ, Argentina; Immunoparasitology Laboratory, School of Veterinary Sciences, National University of La Plata, 60 and 118, La Plata 1900, Argentina.
Immunoparasitology Laboratory, School of Veterinary Sciences, National University of La Plata, 60 and 118, La Plata 1900, Argentina.
Exp Parasitol. 2015 Aug;155:8-12. doi: 10.1016/j.exppara.2015.04.009. Epub 2015 Apr 22.
Neospora caninum is one of the most important causes of bovine abortion, but isolation of live parasites from infected tissue is difficult. The aims of the present study were to obtain new isolates of N. caninum from congenitally infected asymptomatic newborn cattle in Argentina and to perform characterization by multilocus-microsatellite analysis. Five clinically normal born calves, with demonstrable N. caninum antibodies in precolostrum serum by indirect fluorescent antibody test, were euthanized and their brain samples were processed for histopathological, immunohistochemical, polymerase chain reaction (PCR) analysis, and for bioassay in γ-interferon knockout (GKO) mice. Although N. caninum DNA was detected in brain from all the calves by PCR, viable N. caninum was isolated in GKO mice from only one calf. Neospora caninum tachyzoites of this Argentinean isolate, designated NC-Argentina LP1, were propagated in VERO cell cultures seeded with tachyzoites from the infected GKO mice tissues. Multilocus-microsatellite typing on DNA derived from cell cultured tachyzoites revealed a unique genetic pattern, different from reported isolates. This is the first bovine isolation and genetic characterization of N. caninum in Argentina.
犬新孢子虫是牛流产的最重要病因之一,但从感染组织中分离活寄生虫却很困难。本研究的目的是从阿根廷先天性感染但无症状的新生牛中获得犬新孢子虫的新分离株,并通过多位点微卫星分析进行特征鉴定。对5头临床正常出生的犊牛进行安乐死处理,这些犊牛初乳前血清经间接荧光抗体试验检测出犬新孢子虫抗体,对其脑样本进行组织病理学、免疫组织化学、聚合酶链反应(PCR)分析以及在γ-干扰素基因敲除(GKO)小鼠中进行生物测定。尽管通过PCR在所有犊牛的脑中均检测到犬新孢子虫DNA,但仅从一头犊牛的GKO小鼠中分离出了活的犬新孢子虫。这种阿根廷分离株的犬新孢子虫速殖子,命名为NC-阿根廷LP1,在接种了来自感染GKO小鼠组织的速殖子的VERO细胞培养物中进行繁殖。对细胞培养的速殖子衍生的DNA进行多位点微卫星分型,揭示了一种独特的遗传模式,与已报道的分离株不同。这是阿根廷首次对犬新孢子虫进行牛源分离和遗传特征鉴定。