Oxycytosis and the role of triboelectricity and oxidation in bacteria clearing from the bloodstream.

Hayk Minasyan
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引用次数: 1

Abstract

Until recently, little was known about the mechanism for killing and clearing bacteria from the bloodstream. Leukocyte phagocytosis could not be a mechanism for catching, killing and removing bacteria from the bloodstream because of many reasons. Recently accumulated data have led to the conclusion that in bacteremia, bacteria are quickly removed from the blood and erythrocytes are the main cells that capture, kill and remove bacteria. Data were also obtained that erythrocytes catch bacteria by triboelectric charge attraction and kill them by oxygen released from oxyhemoglobin. This phenomenon has been named oxycytosis by analogy with the term phagocytosis. Oxycytosis has been discussed in a number of published articles, but the specific mechanism of triboelectric charging and the mechanism of killing bacteria by oxidation, have not yet been detailed. The purpose of this review is to provide a more detailed explanation of the process of triboelectric charging and capture of bacteria by erythrocytes and destruction of bacteria by oxidation. For the first time, the review presents various variants of oxycytosis (two-stage, three-stage, multi-stage), depending on the resistance of the pathogen to oxidation. The review also discusses the biological significance of oxycytosis and its impact on the understanding of bacteremia and sepsis.
氧溶作用和摩擦电和氧化在细菌从血液中清除中的作用。
直到最近,人们对杀死和清除血液中细菌的机制知之甚少。由于许多原因,白细胞吞噬不可能是一种捕获、杀死和清除血液中细菌的机制。最近积累的数据得出结论,在菌血症中,细菌很快从血液中清除,红细胞是捕获、杀死和清除细菌的主要细胞。红细胞通过摩擦电荷吸引捕获细菌,并通过含氧血红蛋白释放的氧气杀死细菌。这种现象与吞噬作用类似,被称为氧胞酌。许多已发表的文章对氧胞作用进行了讨论,但摩擦电荷的具体机制和氧化杀死细菌的机制尚未详细说明。本文综述的目的是对摩擦电荷和红细胞捕获细菌以及氧化破坏细菌的过程提供更详细的解释。根据病原菌抗氧化能力的不同,本文首次介绍了不同类型的氧化作用(两阶段、三阶段、多阶段)。本文还讨论了胞氧作用的生物学意义及其对了解菌血症和败血症的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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