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气体等离子体诱导的血小板活化与活性物质谱和脂质氧化相对应。

Gas plasma-induced platelet activation corresponds to reactive species profiles and lipid oxidation.

机构信息

ZIK plasmatis, Leibniz Institute for Plasma Science and Technology (INP), Felix-Hausdorff-Str. 2, 17489, Greifswald, Germany.

Institute of Transfusion Medicine, Greifswald University Medical Center, Sauerbruchstr., 17475, Greifswald, Germany.

出版信息

Free Radic Biol Med. 2023 Oct;207:212-225. doi: 10.1016/j.freeradbiomed.2023.07.024. Epub 2023 Jul 23.

Abstract

Surgical-induced hemostasis is a critical step in the closure of incisions, which is frequently achieved via electrocauterization and subsequent tissue necrotization. The latter is associated with postoperative complications. Recent in vivo work suggested reactive species-producing gas plasma technology as a pro-homeostatic agent acting via platelet activation. However, it remained elusive how platelet activation is linked to lipid and protein oxidation and the reactive species compositions. A direct relation between the reactive species composition and platelet activation was revealed by assessing the production of several reactive species and by using antioxidants. In addition, platelet lipidome and proteome analysis identified significantly regulated key lipids in the platelet activation pathway, such as diacylglycerols and phosphatidylinositol as well as oxylipins like thromboxanes. Lipid oxidation products mainly derived from phosphatidylethanolamine and phosphatidylserine species were observed at modest levels. In addition, oxidative post-translational modifications were identified on key proteins of the hemostasis machinery. This study provides new insights into oxidation-induced platelet activation in general and suggests a potential role of those processes in gas plasma-mediated hemostasis in particular.

摘要

手术引起的止血是切口闭合的关键步骤,通常通过电灼和随后的组织坏死来实现。后者与术后并发症有关。最近的体内研究表明,产生活性物质的气体等离子体技术是一种通过血小板激活起作用的促内稳态试剂。然而,血小板激活与脂质和蛋白质氧化以及活性物质组成之间的联系仍然难以捉摸。通过评估几种活性物质的产生并使用抗氧化剂,揭示了活性物质组成与血小板激活之间的直接关系。此外,血小板脂质组学和蛋白质组学分析鉴定了血小板激活途径中显著调节的关键脂质,如二酰基甘油和磷脂酰肌醇以及血栓烷等氧化脂质。观察到脂质氧化产物主要来源于磷脂酰乙醇胺和磷脂酰丝氨酸。此外,还鉴定了止血机制关键蛋白的氧化后翻译修饰。本研究为一般的氧化诱导血小板激活提供了新的见解,并提示这些过程在气体等离子体介导的止血中可能具有潜在作用。

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