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Microbial Antigenic Pressure and Evolution of the Immune Response: Toward a Better Understanding of the Human Immune System in Health and Disease and Therapeutic Interventions

机译:微生物抗原压力和免疫反应的演变:更好地了解人类免疫系统在健康和疾病及治疗干预中。

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摘要

The continuous antigenic triggering has greatly contributed to the evolution of the immune system and, therefore, animals have developed cells able to cope with a broad variety of microbial antigens and or their toxins, e.g., endotoxins. At the same time, intestinal commensals have evolved along with human progress and introduction of new foods, thus empowering both regional and systemic immune response.nnIn this review, some important steps in the evolution of the immune system will be analyzed such as organization of lymphoid organs, formation of germinal centers, leukocyte attraction to tissue, function of Toll like receptors and role of antimicrobial peptides. In particular, the major phylogenetic acquisitions of living organisms in the assessment of the immune machinery will be emphasized. Finally, fish will be taken into consideration as animal models of human diseases also in view of drug design strategies. Special attention will be focused on vaccinated salmon and zebrafish models.
机译:连续的抗原触发极大地促进了免疫系统的进化,因此,动物已经开发出能够应对多种微生物抗原和/或它们的毒素例如内毒素的细胞。同时,随着人类的进步和新食品的引入,肠道共生体也随之进化,从而增强了区域和全身的免疫应答。器官,生发中心的形成,白细胞对组织的吸引,Toll样受体的功能以及抗菌肽的作用。特别是,在评估免疫机制时,将重点强调生物的主要系统发育习性。最后,考虑到药物设计策略,鱼类将被视为人类疾病的动物模型。将特别关注接种鲑鱼和斑马鱼的疫苗模型。

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