首页> 美国卫生研究院文献>Oxidative Medicine and Cellular Longevity >Mitogenesis of Vascular Smooth Muscle Cell Stimulated by Platelet-Derived Growth Factor-bb Is Inhibited by Blocking of Intracellular Signaling by Epigallocatechin-3-O-Gallate
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Mitogenesis of Vascular Smooth Muscle Cell Stimulated by Platelet-Derived Growth Factor-bb Is Inhibited by Blocking of Intracellular Signaling by Epigallocatechin-3-O-Gallate

机译:血小板衍生的生长因子-bb刺激的血管平滑肌细胞的有丝分裂被表没食子儿茶素-3-O-加利特阻断细胞内信号传导所抑制。

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摘要

Epigallocatechin gallate (EGCG) is known to exhibit antioxidant, antiproliferative, and antithrombogenic effects and reduce the risk of cardiovascular diseases. Key events in the development of cardiovascular disease are hypertrophy and hyperplasia according to vascular smooth muscle cell proliferation. In this study, we investigated whether EGCG can interfere with PDGF-bb stimulated proliferation, cell cycle distribution, and the gelatinolytic activity of MMP and signal transduction pathways on RAOSMC when it was treated in two different ways—cotreatment with PDGF-bb and pretreatment of EGCG before addition of PDGF-bb. Both cotreated and pretreated EGCG significantly inhibited PDGF-bb induced proliferation, cell cycle progression of the G0/G1 phase, and the gelatinolytic activity of MMP-2/9 on RAOSMC. Also, EGCG blocked PDGF receptor-β (PDGFR-β) phosphorylation on PDGF-bb stimulated RAOSMC under pretreatment with cells as well as cotreatment with PDGF-bb. The downstream signal transduction pathways of PDGFR-β, including p42/44 MAPK, p38 MAPK, and Akt phosphorylation, were also inhibited by EGCG in a pattern similar to PDGFR-β phosphorylation. These findings suggest that EGCG can inhibit PDGF-bb stimulated mitogenesis by indirectly and directly interrupting PDGF-bb signals and blocking the signaling pathway via PDGFR-β phosphorylation. Furthermore, EGCG may be used for treatment and prevention of cardiovascular disease through blocking of PDGF-bb signaling.
机译:没食子儿茶素没食子酸酯(EGCG)表现出抗氧化剂,抗增殖和抗血栓形成作用,并降低了患心血管疾病的风险。心血管疾病发展的关键事件是根据血管平滑肌细胞增殖的肥大和增生。在这项研究中,我们研究了当以两种不同的方式处理EGCG是否可以干扰PDGF-bb刺激的增殖,细胞周期分布以及MMP的明胶分解活性和RAOSMC上的信号转导途径时,EGCG可以与PDGF-bb共同治疗,也可以通过预先治疗。加入PDGF-bb之前的EGCG。共同处理和预处理的EGCG均显着抑制PDGF-bb诱导的增殖,G0 / G1期的细胞周期进程以及MMP-2 / 9对RAOSMC的明胶分解活性。同样,在用细胞预处理以及用PDGF-bb共同处理的情况下,EGCG阻断了PDGF-bb刺激的RAOSMC上PDGF受体-β(PDGFR-β)的磷酸化。 EGCG也抑制PDGFR-β的下游信号转导途径,包括p42 / 44 MAPK,p38 MAPK和Akt磷酸化,其作用方式与PDGFR-β磷酸化相似。这些发现表明,EGCG可通过间接和直接中断PDGF-bb信号并通过PDGFR-β磷酸化阻断信号通路来抑制PDGF-bb刺激的有丝分裂。此外,EGCG可通过阻断PDGF-bb信号转导用于治疗和预防心血管疾病。

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