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弓形虫不同菌株类型对BeWo滋养层细胞和HeLa细胞的细胞周期凋亡及S期有不同调控作用。

Apoptosis and S phase of the cell cycle in BeWo trophoblastic and HeLa cells are differentially modulated by Toxoplasma gondii strain types.

作者信息

Angeloni M B, Silva N M, Castro A S, Gomes A O, Silva D A O, Mineo J R, Ferro E A V

机构信息

Laboratory of Histology and Embriology, Institute of Biomedical Sciences, Universidade Federal de Uberlândia, Av. Pará 1720, 38400 902 Uberlândia, MG, Brazil.

出版信息

Placenta. 2009 Sep;30(9):785-91. doi: 10.1016/j.placenta.2009.07.002. Epub 2009 Jul 30.

Abstract

Transplacental transmission of Toxoplasma gondii causes congenital toxoplasmosis, one of the most severe forms of infection. The ability of the parasite to survive intracellularly largely depends on the blocking of different proapoptotic signaling cascades of the host cells. During pregnancy, however, alterations in the incidence of apoptosis are associated with abnormal placental morphology and function. The aim of this study was to evaluate the incidence of apoptosis and cell proliferation in trophoblastic (BeWo cell line) and uterine cervical (HeLa cell line) cells infected with a highly virulent RH strain or a moderately virulent ME49 strain of T. gondii. BeWo and HeLa cells were infected with RH or ME49 tachyzoites (2:1 and 5:1; parasite:cell) or medium alone (control). After 2 h, 6 h and 12 h of incubation, cells were fixed in 10% formalin and analyzed by immunohistochemistry to determine the apoptosis (expression of cytokeratin 18 neo-epitope--clone M30) and cell in S phase (expression of proliferating cell nuclear antigen--PCNA) indices. RH strain-infected BeWo and HeLa cells showed a lower apoptosis index than non-infected controls, whereas a higher apoptosis index was found in ME49 strain-infected cells compared to controls. In addition, RH-infected cells displayed lower apoptosis index than ME49-infected cells, even though active caspase-3 was detected in both cell types infected with either RH or ME49 strains as well in non-infected cells in all analyzed times of infection. Also, the cell S phase indices were higher in ME49 strain-infected BeWo and HeLa cells as compared to non-infected controls and RH strain-infected cells. These results indicate that RH and ME49 strains of T. gondii possess opposing mechanism of interference in apoptosis and cell cycle S phase of both BeWo and HeLa cells and these differences can be associated to evasion strategies of the parasite to survive inside the host cells.

摘要

弓形虫经胎盘传播可导致先天性弓形虫病,这是最严重的感染形式之一。该寄生虫在细胞内生存的能力很大程度上取决于对宿主细胞不同促凋亡信号级联反应的阻断。然而,在怀孕期间,细胞凋亡发生率的改变与胎盘形态和功能异常有关。本研究的目的是评估感染强毒株RH或中等毒力株ME49的弓形虫滋养层细胞(BeWo细胞系)和子宫颈细胞(HeLa细胞系)中细胞凋亡和细胞增殖的发生率。将BeWo和HeLa细胞分别用RH或ME49速殖子(2:1和5:1;寄生虫:细胞)感染或仅用培养基处理(对照)。孵育2小时、6小时和12小时后,将细胞固定于10%福尔马林中,通过免疫组织化学分析以确定凋亡(细胞角蛋白18新表位的表达——克隆M30)和S期细胞(增殖细胞核抗原的表达——PCNA)指数。与未感染的对照相比,感染RH株的BeWo和HeLa细胞显示出较低的凋亡指数,而与对照相比,感染ME49株的细胞中凋亡指数较高。此外,即使在所有分析的感染时间点,感染RH或ME49株的两种细胞类型以及未感染的细胞中均检测到活性半胱天冬酶-3,但感染RH的细胞凋亡指数低于感染ME49的细胞。同样,与未感染的对照和感染RH株的细胞相比,感染ME49株的BeWo和HeLa细胞的S期细胞指数更高。这些结果表明,弓形虫的RH和ME49株对BeWo和HeLa细胞的凋亡和细胞周期S期具有相反的干扰机制,这些差异可能与寄生虫在宿主细胞内生存的逃避策略有关。

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