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Formation and Maturation of the Phagosome: A Key Mechanism in Innate Immunity against Intracellular Bacterial Infection

机译:吞噬体组的形成和成熟:对细胞细菌感染先子性免疫的关键机制

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摘要

Phagocytosis is an essential mechanism in innate immune defense, and in maintaining homeostasis to eliminate apoptotic cells or microbes, such as Mycobacterium tuberculosis, Salmonella enterica, Streptococcus pyogenes and Legionella pneumophila. After internalizing microbial pathogens via phagocytosis, phagosomes undergo a series of ‘maturation’ steps, to form an increasingly acidified compartment and subsequently fuse with the lysosome to develop into phagolysosomes and effectively eliminate the invading pathogens. Through this mechanism, phagocytes, including macrophages, neutrophils and dendritic cells, are involved in the processing of microbial pathogens and antigen presentation to T cells to initiate adaptive immune responses. Therefore, phagocytosis plays a role in the bridge between innate and adaptive immunity. However, intracellular bacteria have evolved diverse strategies to survive and replicate within hosts. In this review, we describe the sequential stages in the phagocytosis process. We also discuss the immune evasion strategies used by pathogens to regulate phagosome maturation during intracellular bacterial infection, and indicate that these might be used for the development of potential therapeutic strategies for infectious diseases.
机译:吞噬作用是先天免疫防御的重要机制,以及维持稳态消除凋亡细胞或微生物,如结核分枝杆菌,沙门氏菌肠,链球菌和军团菌肺炎。在通过吞噬作用内化微生物病原体后,噬菌体经历一系列“成熟”步骤,形成越来越酸化的隔室,随后与溶酶体融合以发展成吞噬细胞,有效地消除入侵的病原体。通过这种机制,吞噬细胞,包括巨噬细胞,中性粒细胞和树突细胞,参与加工微生物病原体和抗原呈递给T细胞以引发适应性免疫应答。因此,吞噬作用在先天和适应症之间的桥梁中发挥着作用。然而,细胞内细菌已经进化了不同的策略,以存活并在主机内复制。在本综述中,我们描述了吞噬作用过程中的顺序阶段。我们还讨论病原体使用的免疫逃避策略来调节细胞内细菌感染期间的吞噬物质成熟,并表明这些可能用于开发传染病的潜在治疗策略。

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