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NADPH 氧化酶在体外血小板完全活化和体内血栓形成中是必需的,但在血浆凝固和止血中是可有可无的。

NADPH Oxidases Are Required for Full Platelet Activation In Vitro and Thrombosis In Vivo but Dispensable for Plasma Coagulation and Hemostasis.

机构信息

Institute of Biomedical and Clinical Science, University of Exeter Medical School, United Kingdom (D.V.).

Institute of Clinical Chemistry and Laboratory Medicine, University Medical Center Hamburg-Eppendorf, Germany (R.K.M., N.W., M.H., S.K., T.R., G.P.).

出版信息

Arterioscler Thromb Vasc Biol. 2021 Feb;41(2):683-697. doi: 10.1161/ATVBAHA.120.315565. Epub 2020 Dec 3.

Abstract

OBJECTIVE

Using 3KO (triple NOX [NADPH oxidase] knockout) mice (ie, NOX1/NOX2/NOX4), we aimed to clarify the role of this family of enzymes in the regulation of platelets in vitro and hemostasis in vivo. Approach and Results: 3KO mice displayed significantly reduced platelet superoxide radical generation, which was associated with impaired platelet aggregation, adhesion, and thrombus formation in response to the key agonists collagen and thrombin. A comparison with single-gene knockouts suggested that the phenotype of 3KO platelets is the combination of the effects of the genetic deletion of NOX1 and NOX2, while NOX4 does not show any significant function in platelet regulation. 3KO platelets displayed significantly higher levels of cGMP-a negative platelet regulator that activates PKG (protein kinase G). The inhibition of PKG substantially but only partially rescued the defective phenotype of 3KO platelets, which are responsive to both collagen and thrombin in the presence of the PKG inhibitors KT5823 or Rp-8-pCPT-cGMPs, but not in the presence of the NOS (NO synthase) inhibitor L-NG-monomethyl arginine. In vivo, triple NOX deficiency protected against ferric chloride-driven carotid artery thrombosis and experimental pulmonary embolism, while hemostasis tested in a tail-tip transection assay was not affected. Procoagulatory activity of platelets (ie, phosphatidylserine surface exposure) and the coagulation cascade in platelet-free plasma were normal.

CONCLUSIONS

This study indicates that inhibiting NOXs has strong antithrombotic effects partially caused by increased intracellular cGMP but spares hemostasis. NOXs are, therefore, pharmacotherapeutic targets to develop new antithrombotic drugs without bleeding side effects.

摘要

目的

利用 3KO(三重 NOX [NADPH 氧化酶] 敲除)小鼠(即 NOX1/NOX2/NOX4),我们旨在阐明该酶家族在体外调节血小板和体内止血中的作用。

方法和结果

3KO 小鼠的血小板超氧自由基生成明显减少,这与血小板聚集、黏附和胶原和凝血酶反应性血栓形成受损有关。与单基因敲除小鼠的比较表明,3KO 血小板的表型是 NOX1 和 NOX2 基因缺失的综合效应,而 NOX4 在血小板调节中没有表现出任何显著功能。3KO 血小板的 cGMP-a 水平明显升高-一种负性血小板调节剂,可激活 PKG(蛋白激酶 G)。PKG 抑制剂可显著但仅部分挽救 3KO 血小板的缺陷表型,这些血小板在 PKG 抑制剂 KT5823 或 Rp-8-pCPT-cGMPs 的存在下对胶原和凝血酶均有反应,但在 NOS(一氧化氮合酶)抑制剂 L-NG-单甲基精氨酸存在下则没有反应。在体内,三重 NOX 缺乏可预防三氯化铁诱导的颈总动脉血栓形成和实验性肺栓塞,而在尾尖切断试验中检测到的止血作用不受影响。血小板的促凝活性(即,血小板磷脂酰丝氨酸表面暴露)和血小板游离血浆中的凝血级联反应正常。

结论

本研究表明,抑制 NOXs 具有很强的抗血栓作用,部分原因是细胞内 cGMP 增加,但不影响止血。因此,NOX 是开发新的抗血栓药物而无出血副作用的治疗靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d34d/7837688/ade34be200e7/atv-41-683-g002.jpg

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