Ocular Toxoplasmosis: Mechanisms of Retinal Infection and Experimental Models

V. Rodriguez Fernandez, Giovanni Casini, F. Bruschi
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引用次数: 3

Abstract

Ocular toxoplasmosis (OT) is caused by the parasite Toxoplasma gondii and affects many individuals throughout the world. Infection may occur through congenital or acquired routes. The parasites enter the blood circulation and reach both the retina and the retinal pigment epithelium, where they may cause cell damage and cell death. Different routes of access are used by T. gondii to reach the retina through the retinal endothelium: by transmission inside leukocytes, as free parasites through a paracellular route, or after endothelial cell infection. A main feature of OT is the induction of an important inflammatory state, and the course of infection has been shown to be influenced by the host immunogenetics. On the other hand, there is evidence that the T. gondii phenotype also has an impact on the distribution of the pathology in different areas. Although considerable knowledge has been acquired on OT, a deeper knowledge of its mechanisms is necessary to provide new, more targeted treatment strategies. In particular, in addition to in vitro and in vivo experimental models, organotypic, ex vivo retinal explants may be useful in this direction.
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眼弓形虫病:视网膜感染机制和实验模型
眼弓形虫病(OT)是由弓形虫引起的,影响着世界各地的许多人。感染可能通过先天或后天途径发生。寄生虫进入血液循环,到达视网膜和视网膜色素上皮,可能导致细胞损伤和细胞死亡。弓形虫使用不同的途径通过视网膜内皮到达视网膜:通过白细胞内的传播,作为游离寄生虫通过细胞旁途径,或在内皮细胞感染后。OT的一个主要特征是诱导一种重要的炎症状态,并且感染过程已被证明受到宿主免疫遗传学的影响。另一方面,有证据表明,弓形虫表型也对不同地区的病理分布产生影响。尽管已经获得了大量关于OT的知识,但有必要对其机制有更深入的了解,以提供新的、更有针对性的治疗策略。特别地,除了体外和体内实验模型之外,器官型离体视网膜外植体在这个方向上可能是有用的。
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