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Vomocytosis: Too Much Booze, Base, or Calcium?

机译:呕吐:酒,碱或钙过多?

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Macrophages are well known for their phagocytic activity and their role in innate immune responses. Macrophages eat non-self particles, via a variety of mechanisms, and typically break down internalized cargo into small macromolecules. However, some pathogenic agents have the ability to evade this endosomal degradation through a nonlytic exocytosis process termed vomocytosis. This phenomenon has been most often studied for Cryptococcus neoformans , a yeast that causes roughly 180,000 deaths per year, primarily in immunocompromised (e.g., human immunodeficiency virus [HIV]) patients. Existing dogma purports that vomocytosis involves distinctive cellular pathways and intracellular physicochemical cues in the host cell during phagosomal maturation. Moreover, it has been observed that the immunological state of the individual and macrophage phenotype affect vomocytosis outcomes. Here we compile the current knowledge on the factors (with respect to the phagocytic cell) that promote vomocytosis of C. neoformans from macrophages.
机译:巨噬细胞以其吞噬活性及其在先天免疫应答中的作用而闻名。巨噬细胞通过各种机制吞噬非自身的颗粒,通常将内化的货物分解成小的大分子。但是,某些病原体具有通过称为溶胞作用的非溶解性胞吐作用过程逃避这种内体降解的能力。对于新隐球菌(Cryptococcus neoformans)来说,这种现象最为常见,这种酵母每年会导致大约180,000例死亡,主要是在免疫功能低下(例如,人类免疫缺陷病毒[HIV])患者中死亡。现有的教条声称,在吞噬体成熟期间,胞吞作用涉及宿主细胞中的独特细胞途径和细胞内物理化学线索。此外,已经观察到个体的免疫状态和巨噬细胞表型影响单核细胞增多症的结果。在这里,我们收集了有关促进巨噬细胞新孢子虫的胞吞作用的因素(相对于吞噬细胞)的当前知识。

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