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性类固醇对肥胖带绦虫繁殖和感染性的差异影响所涉及的分子机制。

Molecular mechanisms involved in the differential effects of sex steroids on the reproduction and infectivity of Taenia crassiceps.

作者信息

Escobedo Galileo, Larralde Carlos, Chavarria Anahí, Cerbón Marco A, Morales-Montor Jorge

机构信息

Departamento de Inmunología, Instituto de Investigaciones Biomédicas, U.N.A.M., AP 70228, Mexico D.F. 04510, Mexico.

出版信息

J Parasitol. 2004 Dec;90(6):1235-44. doi: 10.1645/GE-297R.

Abstract

The in vitro exposure of Taenia crassiceps cysticerci to 17-beta estradiol (E2) and progesterone (P4) stimulated their reproduction and infectivity. Testosterone (T4) and dihydrotestosterone (DHT) inhibited their reproduction and reduced their motility and infectivity. E2 and P4 increased, whereas T4 and DHT reduced, the expression of parasite c-fos and c-jun and DNA synthesis. In vitro exposure of cysticerci to sex steroids before their inoculation into recipient noninfected mice resulted in large parasite loads when pretreated with E2 and P4 and in smaller loads when pretreated with T4 and DHT To determine the possible molecular mechanisms by which sex steroids affect T. crassiceps, sex steroid receptors were amplified. Taenia crassiceps expressed estrogen receptors (both alpha and beta isoforms) and androgen receptors but no P4 receptors. These results demonstrate that sex steroids act directly on parasite reproduction by binding to a classic and specific sex steroid receptor on the parasite. The differential response of cysticerci to sex steroids may also be involved in their ability to grow faster in the murine female or feminized male host. This is the first report of direct sex steroid effects on the parasite possibly through sex steroid receptors in the cysticerci.

摘要

肥胖带绦虫囊尾蚴在体外暴露于17-β雌二醇(E2)和孕酮(P4)会刺激其繁殖和感染性。睾酮(T4)和双氢睾酮(DHT)则抑制其繁殖,并降低其活力和感染性。E2和P4增加,而T4和DHT降低寄生虫c-fos和c-jun的表达以及DNA合成。在将囊尾蚴接种到未感染的受体小鼠之前,先在体外将其暴露于性类固醇,结果发现,用E2和P4预处理时会导致大量寄生虫负荷,而用T4和DHT预处理时寄生虫负荷较小。为了确定性类固醇影响肥胖带绦虫的可能分子机制,对性类固醇受体进行了扩增。肥胖带绦虫表达雌激素受体(α和β两种亚型)和雄激素受体,但不表达P4受体。这些结果表明,性类固醇通过与寄生虫上经典且特异性的性类固醇受体结合,直接作用于寄生虫繁殖。囊尾蚴对性类固醇的不同反应也可能涉及其在雌性小鼠或雌性化雄性宿主中生长更快的能力。这是关于性类固醇可能通过囊尾蚴中的性类固醇受体直接影响寄生虫的首次报道。

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