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与克氏锥虫相互作用期间心肌细胞表面电荷的变化。

Alterations in the surface charge of heart muscle cells during interaction with Trypanosoma cruzi.

作者信息

Soeiro M de N, Costa e Silva Filho F, Leal de Meirelles M de N

机构信息

Departamento de Ultraestrutura, FIOCRUZ, Rio de Janeiro, Brazil.

出版信息

Cell Biophys. 1995 Feb;26(1):21-44. doi: 10.1007/BF02820885.

Abstract

The surface charge of heart muscle cells (HMC) and Trypanosoma cruzi trypomastigotes was estimated during their interaction by means of zeta potential (ZP). Metacyclic and bloodstream trypomastigote, but not amastigote forms, are able to decrease the surface charge of HMC as well as other nonphagocytic cells. However, no alteration could be detected on T. cruzi-infected macrophage cell line. Trypomastigote forms collected from the supernatant after 20 h of contact with HMC also have their ZP value decreased. The analysis of the surface components of both the parasite and HMC involved in such interaction was also carried out. Assays concerning the kinetics of the cell-parasite interaction demonstrated the influence of parasite surface anionogenicity during its interaction with HMC. The binding of bloodstream forms to HMC was enhanced after their incubation with cationized ferritin (CF), whereas phospholipase C and neuraminidase treatments improved and trypsin treatment inhibited parasite uptake in HMC. Conversely, the incubation of HMC with phospholipase C impaired, and with trypsin enhanced, the interiorization of the parasites. These results suggest that trypomastigote forms of T. cruzi may process the surface of HMC and its own surface either by removing molecules or by exposing ligands for their internalization.

摘要

通过ζ电位(ZP)评估心肌细胞(HMC)与克氏锥虫锥鞭毛体相互作用期间它们的表面电荷。循环后期和血液中的锥鞭毛体,而非无鞭毛体形式,能够降低HMC以及其他非吞噬细胞的表面电荷。然而,在感染克氏锥虫的巨噬细胞系中未检测到变化。与HMC接触20小时后从上清液中收集的锥鞭毛体形式,其ZP值也降低。还对参与这种相互作用的寄生虫和HMC的表面成分进行了分析。关于细胞 - 寄生虫相互作用动力学的测定表明寄生虫表面阴离子性在其与HMC相互作用期间的影响。血液形式与阳离子铁蛋白(CF)孵育后与HMC的结合增强,而磷脂酶C和神经氨酸酶处理可改善,胰蛋白酶处理可抑制寄生虫在HMC中的摄取。相反,HMC与磷脂酶C孵育会损害寄生虫的内化,而与胰蛋白酶孵育则会增强寄生虫的内化。这些结果表明,克氏锥虫的锥鞭毛体形式可能通过去除分子或暴露用于内化的配体来处理HMC的表面及其自身表面。

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