Anti-thrombotic effects of ginsenoside Rk3 by regulating cAMP and PI3K/MAPK pathway on human platelets

IF 6.8 2区 医学 Q1 CHEMISTRY, MEDICINAL Journal of Ginseng Research Pub Date : 2023-11-01 DOI:10.1016/j.jgr.2023.04.006
Hyuk-Woo Kwon , Jung-Hae Shin , Man Hee Rhee , Chang-Eun Park , Dong-Ha Lee
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Abstract

Background and objective

The ability to inhibit aggregation has been demonstrated with synthetically derived ginsenoside compounds G-Rp (1, 3, and 4) and ginsenosides naturally found in Panax ginseng 20(S)-Rg3, Rg6, F4, and Ro. Among these compounds, Rk3 (G-Rk3) from Panax ginseng needs to be further explored in order to reveal the mechanisms of action during inhibition.

Methodology

Our study focused to investigate the action of G-Rk3 on agonist-stimulated human platelet aggregation, inhibition of platelet signaling molecules such as fibrinogen binding with integrin αIIbβ3 using flow cytometry, intracellular calcium mobilization, dense granule secretion, and thromboxane B2 secretion. In addition, we checked the regulation of phosphorylation on PI3K/MAPK pathway, and thrombin-induced clot retraction was also observed in platelets rich plasma.

Key Results

G-Rk3 significantly increased amounts of cyclic adenosine monophosphate (cAMP) and led to significant phosphorylation of cAMP-dependent kinase substrates vasodilator-stimulated phosphoprotein (VASP) and inositol 1,4,5-trisphosphate receptor (IP3R). In the presence of G-Rk3, dense tubular system Ca2+ was inhibited, and platelet activity was lowered by inactivating the integrin αIIb/β3 and reducing the binding of fibrinogen. Furthermore, the effect of G-Rk3 extended to the inhibition of MAPK and PI3K/Akt phosphorylation resulting in the reduced secretion of intracellular granules and reduced production of TXA2. Lastly, G-Rk3 inhibited platelet aggregation and thrombus formation via fibrin clot.

Conclusions and implications

These results suggest that when dealing with cardiovascular diseases brought upon by faulty aggregation among platelets or through the formation of a thrombus, the G-Rk3 compound can play a role as an effective prophylactic or therapeutic agent.

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人参皂苷Rk3调节人血小板cAMP和PI3K/MAPK通路的抗血栓作用
背景与目的合成的人参皂苷化合物G-Rp(1,3,4)和人参20(S)中天然存在的人参皂苷-Rg3, Rg6, F4和Ro具有抑制聚集的能力。其中,人参中的Rk3 (G-Rk3)在抑制过程中的作用机制有待进一步研究。方法采用流式细胞术研究G-Rk3对激动剂刺激的人血小板聚集、抑制血小板信号分子(如纤维蛋白原与整合素α ib β3结合)、细胞内钙动员、致密颗粒分泌和血栓素B2分泌的作用。此外,我们还检查了磷酸化对PI3K/MAPK通路的调节,并且在富血小板血浆中也观察到凝血酶诱导的凝块收缩。g - rk3显著增加环磷酸腺苷(cAMP)的量,并导致cAMP依赖性激酶底物血管扩张剂刺激磷酸化蛋白(VASP)和肌醇1,4,5-三磷酸受体(IP3R)的显著磷酸化。在G-Rk3存在下,通过失活整合素αIIb/β3和减少纤维蛋白原的结合,致密管系统Ca2+被抑制,血小板活性降低。此外,G-Rk3的作用扩展到抑制MAPK和PI3K/Akt磷酸化,导致细胞内颗粒分泌减少,TXA2的产生减少。最后,G-Rk3通过纤维蛋白凝块抑制血小板聚集和血栓形成。结论和意义这些结果表明,当处理由血小板错误聚集或血栓形成引起的心血管疾病时,G-Rk3化合物可以作为有效的预防或治疗药物发挥作用。
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来源期刊
Journal of Ginseng Research
Journal of Ginseng Research CHEMISTRY, MEDICINAL-INTEGRATIVE & COMPLEMENTARY MEDICINE
CiteScore
11.40
自引率
9.50%
发文量
111
审稿时长
6-12 weeks
期刊介绍: Journal of Ginseng Research (JGR) is an official, open access journal of the Korean Society of Ginseng and is the only international journal publishing scholarly reports on ginseng research in the world. The journal is a bimonthly peer-reviewed publication featuring high-quality studies related to basic, pre-clinical, and clinical researches on ginseng to reflect recent progresses in ginseng research. JGR publishes papers, either experimental or theoretical, that advance our understanding of ginseng science, including plant sciences, biology, chemistry, pharmacology, toxicology, pharmacokinetics, veterinary medicine, biochemistry, manufacture, and clinical study of ginseng since 1976. It also includes the new paradigm of integrative research, covering alternative medicinal approaches. Article types considered for publication include review articles, original research articles, and brief reports. JGR helps researchers to understand mechanisms for traditional efficacy of ginseng and to put their clinical evidence together. It provides balanced information on basic science and clinical applications to researchers, manufacturers, practitioners, teachers, scholars, and medical doctors.
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