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锌调节血小板中活性氧的生成。

Zinc regulates reactive oxygen species generation in platelets.

机构信息

School of Life Sciences, Anglia Ruskin University, Cambridge, UK.

College of Medicine and Health, University of Exeter, Exeter, UK.

出版信息

Platelets. 2021 Apr 3;32(3):368-377. doi: 10.1080/09537104.2020.1742311. Epub 2020 Apr 5.

Abstract

Vascular complications resulting from atherosclerosis development are a major cause of death. Reactive oxygen species (ROS) are produced by platelets during activation, and have been demonstrated to positively regulate platelet activatory responses. Zn is also an important hemostatic cofactor in platelets, acting both as a platelet agonist and second messenger. Whilst the effect of Zn-dependent signaling mechanisms on ROS production in nucleated cells has been demonstrated, comparable roles in platelets have yet to be investigated. In this study we investigated the relationship between fluctuations in cytosolic Zn [Zn] and platelet ROS production. Agonist-evoked ROS production, GSH levels and GPx activity are abrogated in platelets treated with the Zn-chelator, TPEN. Conversely, increasing platelet [Zn] using Zn ionophores potentiated ROS generation and decreased GSH levels and GPx activity. Zn-dependent ROS production was sensitive to pretreatment with DPI or mitoTEMPO, NADPH oxidase and mitochondria inhibitors respectively. Increasing [Zn] resulted in increases of Erk1/2 and JNK phosphorylation. Our data are consistent with a functional association between [Zn] and ROS production in platelets that could influence thrombus formation in a clinical context.

摘要

动脉粥样硬化发展导致的血管并发症是死亡的主要原因。血小板在激活过程中会产生活性氧(ROS),并已被证明能正向调节血小板激活反应。锌也是血小板中的重要止血辅助因子,既能作为血小板激动剂,也能作为第二信使。虽然已经证明了 Zn 依赖性信号机制对核细胞中 ROS 生成的影响,但在血小板中尚未进行类似的研究。在这项研究中,我们研究了细胞浆 Zn [Zn]波动与血小板 ROS 生成之间的关系。用 Zn 螯合剂 TPEN 处理血小板后,激动剂诱导的 ROS 生成、GSH 水平和 GPx 活性被阻断。相反,使用 Zn 离子载体增加血小板 [Zn]会增强 ROS 的产生,降低 GSH 水平和 GPx 活性。Zn 依赖性 ROS 生成对 DPI 或 mitoTEMPO、NADPH 氧化酶和线粒体抑制剂的预处理敏感。增加 [Zn]会导致 Erk1/2 和 JNK 磷酸化增加。我们的数据与血小板中 [Zn]和 ROS 生成之间存在功能关联一致,这种关联可能会影响临床环境中的血栓形成。

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