Erythrocyte oxidative stress and thrombosis.

IF 4.5 2区 医学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Expert Reviews in Molecular Medicine Pub Date : 2022-08-26 DOI:10.1017/erm.2022.25
Alessandra Bettiol, Silvia Galora, Flavia Rita Argento, Eleonora Fini, Giacomo Emmi, Irene Mattioli, Giacomo Bagni, Claudia Fiorillo, Matteo Becatti
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引用次数: 12

Abstract

Thrombosis is a common disorder with a relevant burden of morbidity and mortality worldwide, particularly among elderly patients. Growing evidence demonstrated a direct role of oxidative stress in thrombosis, with various cell types contributing to this process. Among them, erythrocytes produce high quantities of intracellular reactive oxygen species (ROS) by NADPH oxidase activation and haemoglobin autoxidation. Concomitantly, extracellular ROS released by other cells in the blood flow can be uptaken and accumulate within erythrocytes. This oxidative milieu can alter erythrocyte membrane structure, leading to an impaired erythrocyte function, and promoting erythrocytes lysis, binding to endothelial cells, activation of platelet and of coagulation factors, phosphatidylserine exposure and release of microvesicles. Moreover, these abnormal erythrocytes are able to adhere to the vessel wall, contributing to thrombin generation within the thrombus. This process results in accelerated haemolysis and in a hypercoagulable state, in which structurally impaired erythrocytes contribute to increase thrombus size, to reduce its permeability and susceptibility to lysis. However, the wide plethora of mechanisms by which oxidised erythrocytes contribute to thrombosis is not completely elucidated. This review discusses the main biochemical aspects linking erythrocytes, oxidative stress and thrombosis, addressing their potential implication for clinical and therapeutic management.

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红细胞氧化应激与血栓形成。
血栓形成是一种常见疾病,在世界范围内,特别是在老年患者中,具有相关的发病率和死亡率负担。越来越多的证据表明氧化应激在血栓形成中的直接作用,各种细胞类型都参与了这一过程。其中,红细胞通过NADPH氧化酶活化和血红蛋白自氧化产生大量的胞内活性氧(ROS)。同时,其他细胞在血流中释放的胞外ROS可被吸收并在红细胞内积累。这种氧化环境可以改变红细胞膜结构,导致红细胞功能受损,促进红细胞溶解,与内皮细胞结合,激活血小板和凝血因子,磷脂酰丝氨酸暴露和微泡释放。此外,这些异常红细胞能够粘附在血管壁上,促进血栓内凝血酶的生成。这一过程导致血液溶解加速并处于高凝状态,在这种状态下,结构受损的红细胞会增加血栓的大小,降低其渗透性和溶解的易感性。然而,广泛过剩的机制,其中氧化红细胞有助于血栓形成尚未完全阐明。本文讨论了红细胞、氧化应激和血栓形成的主要生化方面,并讨论了它们对临床和治疗管理的潜在意义。
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来源期刊
Expert Reviews in Molecular Medicine
Expert Reviews in Molecular Medicine BIOCHEMISTRY & MOLECULAR BIOLOGY-MEDICINE, RESEARCH & EXPERIMENTAL
CiteScore
7.40
自引率
1.60%
发文量
45
期刊介绍: Expert Reviews in Molecular Medicine is an innovative online journal featuring authoritative and timely Reviews covering gene therapy, immunotherapeutics, drug design, vaccines, genetic testing, pathogenesis, microbiology, genomics, molecular epidemiology and diagnostic techniques. We especially welcome reviews on translational aspects of molecular medicine, particularly those related to the application of new understanding of the molecular basis of disease to experimental medicine and clinical practice.
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