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Role of cyclooxygenase-2 in Trypanosoma cruzi survivalin the early stages of parasite host-cell interaction

机译:环氧合酶2在克氏锥虫存活中的作用在寄生虫宿主细胞相互作用的早期

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摘要

Chagas disease, caused by the intracellular protozoan Trypanosoma cruzi, is a serious health problem in Latin America. During this parasitic infection, the heart is one of the major organs affected. The pathogenesis of tissue remodelling, particularly regarding cardiomyocyte behaviour after parasite infection and the molecular mechanisms that occur immediately following parasite entry into host cells are not yet completely understood. When cells are infected with T. cruzi, they develop an inflammatory response, in which cyclooxygenase-2 (COX-2) catalyses rate-limiting steps in the arachidonic acid pathway. However, how the parasite interaction modulates COX-2 activity is poorly understood. In this study, the H9c2 cell line was used as our model and we investigated cellular and biochemical aspects during the initial 48 h of parasitic infection. Oscillatory activity of COX-2 was observed, which correlated with the control of the pro-inflammatory environment in infected cells. Interestingly, subcellular trafficking was also verified, correlated with the control of Cox-2 mRNA or the activated COX-2 protein in cells, which is directly connected with the assemble of stress granules structures. Our collective findings suggest that in the very early stage of the T. cruzi-host cell interaction, the parasiteis able to modulate the cellular metabolism in order to survives.
机译:由细胞内原生动物克氏锥虫引起的恰加斯病在拉丁美洲是一个严重的健康问题。在这种寄生虫感染期间,心脏是受影响的主要器官之一。组织重塑的发病机理,特别是关于寄生虫感染后心肌细胞的行为以及寄生虫进入宿主细胞后立即发生的分子机制尚未完全了解。当细胞感染克氏锥虫时,它们会产生炎症反应,其中环氧合酶2(COX-2)催化花生四烯酸途径中的限速步骤。但是,关于寄生虫相互作用如何调节COX-2活性的了解很少。在这项研究中,H9c2细胞系用作我们的模型,我们调查了寄生虫感染最初48小时内的细胞和生化方面。观察到COX-2的振荡活性,其与感染细胞中促炎环境的控制相关。有趣的是,还证实了亚细胞运输,与细胞中Cox-2 mRNA或激活的COX-2蛋白的控制有关,后者直接与应力颗粒结构的组装有关。我们的集体调查结果表明,在克鲁斯氏菌与宿主细胞相互作用的早期,寄生虫能够调节细胞代谢以生存。

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