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A simplified method for hatching and isolating Toxocara canis larvae to facilitate excretory-secretory antigen collection in vitro

机译:一种简化的孵化和分离犬弓形虫幼虫以促进体外分泌分泌抗原收集的方法

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摘要

Human toxocariasis causes several dangerous syndromes that can involve the viscera, vision and central nervous system. Diagnosing toxocariasis requires the identification of antibodies against Toxocara canis or Toxocara cati excretions and secretions (ES). To obtain ES it is necessary to collect a large number of larvae. However, since the earliest work describing the culture of Toxocara larvae, few advances in the method have been made. It has been suggested that carbon dioxide triggers molecular mechanisms that enable nematode hatching. A similar hypothesis has been made regarding Giardia excystation. To test the hypothesis we used the Giardia excystation HBSS method to hatch embryonated T. canis eggs. We found that the HBSS method was more effective than the original De Savigny method. Our results suggest that both parasites require stimulation in an acidic environment, and the abrupt change to a basic milieu in duodenum. This physiological adaptation is successful to exploit the intestinal habitat
机译:人的弓形虫病会导致几种危险的综合征,可能涉及内脏,视觉和中枢神经系统。诊断弓形虫病需要鉴定针对犬弓形虫或弓形虫的排泄物和分泌物(ES)的抗体。为了获得ES,有必要收集大量的幼虫。但是,由于最早描述了弓形虫幼虫培养的工作,因此该方法的进展很少。已经建议二氧化碳触发使线虫孵化的分子机制。关于贾第虫(Giardia)的兴奋作用也有类似的假设。为了验证该假设,我们使用贾第虫(Giardia)激惹HBSS方法孵化了胚胎的T. canis卵。我们发现HBSS方法比原始的De Savigny方法更有效。我们的结果表明,两种寄生虫都需要在酸性环境中进行刺激,并且十二指肠会突然转变为基本环境。这种生理适应性成功开发了肠道栖息地

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