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克氏锥虫体外二次无鞭毛体生成的改进方法:中间发育形式的形态计量学和分子分析

Improved method for in vitro secondary amastigogenesis of Trypanosoma cruzi: morphometrical and molecular analysis of intermediate developmental forms.

作者信息

Hernández-Osorio L A, Márquez-Dueñas C, Florencio-Martínez L E, Ballesteros-Rodea G, Martínez-Calvillo S, Manning-Cela R G

机构信息

Departamento de Biomedicina Molecular, Centro de Investigación y de Estudios Avanzados del IPN, AV. IPN 2508, Col San Pedro Zacatenco, 07360 México, DF, Mexico.

出版信息

J Biomed Biotechnol. 2010;2010:283842. doi: 10.1155/2010/283842. Epub 2009 Dec 13.

Abstract

Trypanosoma cruzi undergoes a biphasic life cycle that consists of four alternate developmental stages. In vitro conditions to obtain a synchronic transformation and efficient rates of pure intermediate forms (IFs), which are indispensable for further biochemical, biological, and molecular studies, have not been reported. In the present study, we established an improved method to obtain IFs from secondary amastigogenesis. During the transformation kinetics, we observed progressive decreases in the size of the parasite body, undulating membrane and flagellum that were concomitant with nucleus remodeling and kinetoplast displacement. In addition, a gradual reduction in parasite movement and acquisition of the amastigote-specific Ssp4 antigen were observed. Therefore, our results showed that the in vitro conditions used obtained large quantities of highly synchronous and pure IFs that were clearly distinguished by morphometrical and molecular analyses. Obtaining these IFs represents the first step towards an understanding of the molecular mechanisms involved in amastigogenesis.

摘要

克氏锥虫经历一个双相生命周期,该周期由四个交替的发育阶段组成。尚未有报道称在体外条件下能实现同步转化并获得高效的纯中间形式(IFs),而这些中间形式对于进一步的生化、生物学和分子研究来说是不可或缺的。在本研究中,我们建立了一种从二次无鞭毛体发生过程中获取IFs的改进方法。在转化动力学过程中,我们观察到寄生虫体、波动膜和鞭毛的大小逐渐减小,这与细胞核重塑和动基体移位同时发生。此外,还观察到寄生虫运动逐渐减少以及获得无鞭毛体特异性Ssp4抗原。因此,我们的结果表明,所使用的体外条件获得了大量高度同步且纯净的IFs,通过形态计量学和分子分析可以清晰地加以区分。获得这些IFs是迈向理解无鞭毛体发生所涉及分子机制的第一步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3a4d/2796335/49033ad89941/JBB2010-283842.001.jpg

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