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JAK2突变在凝血因子调控与血栓形成中的机制研究进展

Research Progress on Mechanisms of JAK2 Mutations in Coagulation Factor Regulation and Thrombosis

  • 摘要: JAK2 V617F突变是骨髓增殖性肿瘤中最具代表性的分子事件之一,其与血栓形成风险显著升高密切相关。本文旨在系统总结该突变诱发血栓形成的机制及其临床特点与管理策略。通过检索近年相关文献,对JAK2 V617F突变引起的分子调控网络、造血细胞功能改变、炎性反应、内皮损伤及凝血系统失衡等研究进展进行综合分析。结果显示,JAK2 V617F突变可导致JAK-STAT通路持续激活,引发红系克隆扩增、血小板高反应性及中性粒细胞趋化增强,同时促进炎症因子释放、中性粒细胞胞外诱捕网形成及血小板-白细胞聚集,进一步加重内皮损伤及凝血活性,从而共同推动动静脉血栓形成。临床上该突变可表现为冠脉事件、脑梗死、深静脉血栓及门静脉系统血栓等多部位血栓,并与较高复发率及预后不良相关。综上,JAK2 V617F突变通过多重机制促进血栓形成,提示未来治疗策略应结合抗凝、抗炎、抑制NETs形成及靶向JAK-STAT通路等综合干预,为提高患者生存提供可能方向。

     

    Abstract: The JAK2 V617F mutation is a key molecular event in myeloproliferative neoplasms and is strongly associated with an increased risk of thrombosis. This review aims to summarize the underlying mechanisms, clinical manifestations, and management strategies for thrombosis driven by the JAK2 V617F mutation. Relevant recent studies are analyzed to evaluate the effect of the mutation on molecular signaling, hematopoietic cell function, inflammatory activation, endothelial injury, and coagulation imbalance. Findings indicate that the JAK2 V617F mutation induces the persistent activation of the JAK-STAT pathway, leading to erythroid clonal expansion, platelet hyperreactivity, and enhanced neutrophil chemotaxis, along with excessive inflammatory cytokine release, NET formation, and platelet-leukocyte aggregation. These processes collectively promote endothelial dysfunction and hypercoagulation, ultimately contributing to arterial and venous thrombosis. Clinically, affected patients may present with coronary artery events deep vein thrombosis, and portal vein thrombosis, often accompanied by high recurrence rates and poor outcomes. In conclusion, the JAK2 V617F mutation drives thrombosis via multiple intertwined mechanisms, suggesting that future therapeutic strategies should integrate anticoagulation, anti-inflammation therapy, NET inhibition, and targeted JAK-STAT pathway blockade to improve patient survival.

     

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