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Porcine retinal cell line VIDO R1 and Chlamydia suis to modelize ocular chlamydiosis

机译:猪视网膜细胞系VIDO R1和猪衣原体模拟眼衣原体病

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Human ocular Chlamydia trachomatis infections can lead to trachoma, the major cause of infectious blindness worldwide. Trachoma control strategies are very helpful but logistically challenging, and a trachoma vaccine is needed but not available. Pigs are a valuable large animal model for various immunological questions and could facilitate the study of human ocular chlamydial infections. In addition, a recent study identified the zoonotic potential of Chlamydia suis, the natural pathogen of pigs. In terms of the One Health Initiative, understanding the host-pathogen-interactions and finding a vaccine for porcine chlamydia infections would also benefit human health. Thus, we infected the porcine retinal cell line VIDO R1 with C suis and analyzed the chlamydial life cycle and the innate immune response of the infected cells. Our results indicate that C. suis completes its life cycle in VIDO R1 cells within 48 h, comparable to C trachomatis in humans. C. suis infection of VIDO R1 cells led to increased levels of various innate immune mediators like pathogen recognition receptors, cytokines and chemokines including IL6, TNF alpha, and MMP9, also most relevant in human C trachomatis infections. These results illustrate the first steps in the host-pathogen-interactions of ocular C suis infections in pigs and show their similarity to C trachomatis infections in humans, justifying further testing of pigs as an animal model for human trachoma. (C) 2015 Elsevier B.V. All rights reserved.
机译:人眼沙眼衣原体感染可导致沙眼,沙眼是全世界感染性失明的主要原因。沙眼控制策略非常有用,但在逻辑上具有挑战性,因此需要沙眼疫苗,但目前尚无。猪是解决各种免疫学问题的有价值的大型动物模型,可以促进人类眼衣原体感染的研究。此外,最近的一项研究确定了猪衣原体(猪衣原体)的人畜共患病潜力。根据“一个健康倡议”,了解宿主与病原体之间的相互作用并寻找针对猪衣原体感染的疫苗也将有益于人类健康。因此,我们用猪链球菌感染了猪视网膜细胞系VIDO R1,并分析了衣原体的生命周期和被感染细胞的先天免疫应答。我们的结果表明,猪链球菌在48小时内可在VIDO R1细胞中完成其生命周期,与人类沙眼衣原体相当。猪肺炎衣原体感染VIDO R1细胞导致各种先天性免疫介质(如病原体识别受体,细胞因子和趋化因子,包括IL6,TNFα和MMP9)的水平升高,这也与人沙眼衣原体感染最相关。这些结果说明了猪眼球猪猪C.suis感染在宿主-病原体相互作用中的第一步,并显示了它们与人眼沙眼衣原体感染的相似性,证明了进一步测试猪作为人沙眼动物模型的合理性。 (C)2015 Elsevier B.V.保留所有权利。

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