Fibach Eitan
Department of Hematology, Hadassah University Hospital, Jerusalem, Israel.
Front Physiol. 2021 Feb 16;12:604738. doi: 10.3389/fphys.2021.604738. eCollection 2021.
Membrane shedding in the form of extracellular vesicles plays a key role in normal physiology and pathology. Partial disturbance of the membrane-cytoskeleton linkage and increased in the intracellular Ca content are considered to be mechanisms underlying the process, but it is questionable whether they constitute the primary initiating steps. Homeostasis of the redox system, which depends on the equilibrium between oxidants and antioxidants, is crucial for many cellular processes. Excess oxidative power results in oxidative stress, which affects many cellular components, including the membrane. Accumulating evidence suggests that oxidative stress indirectly affects membrane shedding most probably by affecting the membrane-cytoskeleton and the Ca content. In red blood cells (RBCs), changes in both the redox system and membrane shedding occur throughout their life-from birth-their production in the bone marrow, to death-aging in the peripheral blood and removal by macrophages in sites of the reticuloendothelial system. Both oxidative stress and membrane shedding are disturbed in diseases affecting the RBC, such as the hereditary and acquired hemolytic anemias (i.e., thalassemia, sickle cell anemia, and autoimmune hemolytic anemia). Herein, I review some data-based and hypothetical possibilities that await experimental confirmation regarding some aspects of the interaction between the redox system and membrane shedding and its role in the normal physiology and pathology of RBCs.
以细胞外囊泡形式存在的膜脱落,在正常生理和病理过程中起着关键作用。膜 - 细胞骨架连接的部分紊乱以及细胞内钙含量的增加被认为是该过程的潜在机制,但它们是否构成主要的起始步骤仍存在疑问。氧化还原系统的稳态依赖于氧化剂和抗氧化剂之间的平衡,对许多细胞过程至关重要。过量的氧化能力会导致氧化应激,影响包括膜在内的许多细胞成分。越来越多的证据表明,氧化应激很可能通过影响膜 - 细胞骨架和钙含量间接影响膜脱落。在红细胞(RBC)中,从出生(在骨髓中产生)到死亡(在外周血中衰老并被网状内皮系统部位的巨噬细胞清除)的整个生命周期中,氧化还原系统和膜脱落都会发生变化。在影响红细胞的疾病中,如遗传性和获得性溶血性贫血(即地中海贫血、镰状细胞贫血和自身免疫性溶血性贫血),氧化应激和膜脱落都会受到干扰。在此,我回顾一些基于数据和假设的可能性,这些关于氧化还原系统与膜脱落之间相互作用的某些方面及其在红细胞正常生理和病理中的作用,尚待实验证实。