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小檗碱及其主要代谢产物小檗红碱通过抑制I类PI3Kβ/Rasa3/Rap1信号通路抑制血小板活化。

Berberine and Its Main Metabolite Berberrubine Inhibit Platelet Activation Through Suppressing the Class I PI3Kβ/Rasa3/Rap1 Pathway.

作者信息

Wang Can, Cheng Yangyang, Zhang Yuanhui, Jin Hongtao, Zuo Zengyan, Wang Aiping, Huang Jianmei, Jiang Jiandong, Kong Weijia

机构信息

School of Chinese Materia Medica, Beijing University of Chinese Medicine, Beijing, China.

State Key Laboratory of Bioactive Substance and Function of Natural Medicines, Institute of Materia Medica, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing, China.

出版信息

Front Pharmacol. 2021 Oct 8;12:734603. doi: 10.3389/fphar.2021.734603. eCollection 2021.

Abstract

Berberine (BBR), a natural product, was reported to inhibit platelet aggregation; however, the molecular mechanisms remain unclear. This study aims to investigate the effects and mechanisms of BBR in inhibiting platelet activation and thrombus formation. Flow cytometry, immunofluorescence, and Western blot were used to determine the inhibitory effects and mechanisms of BBR and its main metabolite berberrubine (M2) on platelet activation and . Purified integrin αIIbβ3, class I PI3K kit, and molecular docking were used to identify the possible targets of BBR and M2. A carrageenan-induced mouse thrombosis model was used to evaluate the effects of BBR on thrombus formation . , BBR and M2 significantly inhibited ADP-induced integrin αIIbβ3 activation, reduced the level of P-selectin on the platelet membrane, and suppressed the binding of fibrinogen to the platelets. In this process, BBR and M2 greatly suppressed the PI3K/Akt pathway and inhibited Rasa3 membrane translocation and Rap1 activation. Furthermore, BBR and M2 selectively inhibited class I PI3Kβ, perhaps through binding to its active site. The activities of BBR were stronger than those of M2. After oral administration, BBR significantly inhibited the PI3K/Akt pathway and Rap1 activation and suppressed ADP-induced platelet activation and carrageenan-induced thrombosis in mice without prolonging bleeding time. We reveal for the first time the possible targets and mechanisms of BBR and M2 in inhibiting platelet activation. Our research may support the future clinical application of BBR as an antiplatelet drug in the prevention or treatment of thrombotic diseases.

摘要

黄连素(BBR)是一种天然产物,据报道具有抑制血小板聚集的作用;然而,其分子机制仍不清楚。本研究旨在探讨BBR抑制血小板活化和血栓形成的作用及机制。采用流式细胞术、免疫荧光和蛋白质印迹法来确定BBR及其主要代谢产物小檗红碱(M2)对血小板活化的抑制作用及机制。使用纯化的整合素αIIbβ3、I类磷脂酰肌醇-3激酶(PI3K)试剂盒和分子对接技术来鉴定BBR和M2可能的靶点。采用角叉菜胶诱导的小鼠血栓形成模型来评估BBR对血栓形成的影响。结果显示,BBR和M2显著抑制二磷酸腺苷(ADP)诱导的整合素αIIbβ3活化,降低血小板膜上P-选择素水平,并抑制纤维蛋白原与血小板的结合。在此过程中,BBR和M2极大地抑制了PI3K/Akt信号通路,抑制Rasa3膜转位和Rap1活化。此外,BBR和M2可能通过与I类PI3Kβ的活性位点结合而选择性抑制其活性。BBR的活性强于M2。口服给药后,BBR显著抑制PI3K/Akt信号通路和Rap1活化,抑制ADP诱导的小鼠血小板活化和角叉菜胶诱导的血栓形成,且不延长出血时间。我们首次揭示了BBR和M2抑制血小板活化的可能靶点和机制。我们的研究可能为BBR作为抗血小板药物在血栓性疾病预防或治疗中的未来临床应用提供支持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ce02/8531212/8cc0bd88f72a/fphar-12-734603-g001.jpg

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