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首页> 外文期刊>Biochemical and Biophysical Research Communications >Effects and underlying mechanisms of curcumin on the proliferation of vascular smooth muscle cells induced by Chol:MbetaCD.
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Effects and underlying mechanisms of curcumin on the proliferation of vascular smooth muscle cells induced by Chol:MbetaCD.

机译:姜黄素对Chol:MbetaCD诱导的血管平滑肌细胞增殖的影响及其潜在机制。

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摘要

Proliferation of vascular smooth muscle cells (VSMCs) contributes to the development of various cardiovascular diseases. Curcumin, extracted from Curcumae longae, has been shown a variety of beneficial effects on human health, including anti-atherosclerosis by mechanisms poorly understood. In the present study, we attempted to investigate whether curcumin has any effect on VSMCs proliferation and the potential mechanisms involved. Our data showed curcumin concentration-dependently abrogated the proliferation of primary rat VSMCs induced by Chol:MbetaCD. To explore the underlying cellular and molecular mechanisms, we found that curcumin was capable of restoring caveolin-1 expression which was reduced by Chol:MbetaCD treatment. Moreover, curcumin abrogated the increment of phospho-ERK1/2 and nuclear accumulation of ERK1/2 in primary rat VSMCs induced by Chol:MbetaCD, which led to a suppression of AP-1 promoter activity stimulated by Chol:MbetaCD. In addition, curcumin was able to reverse cell cycle progression induced by Chol:MbetaCD, which was further supported by its down-regulation of cyclinD1 and E2F promoter activities in the presence of Chol:MbetaCD. Taking together, our data suggest curcumin inhibits Chol:MbetaCD-induced VSMCs proliferation via restoring caveolin-1 expression that leads to the suppression of over-activated ERK signaling and causes cell cycle arrest at G1/S phase. These novel findings support the beneficial potential of curcumin in cardiovascular disease.
机译:血管平滑肌细胞(VSMC)的增殖有助于各种心血管疾病的发展。从姜黄中提取的姜黄素已被广泛了解,对人体健康具有多种有益作用,包括抗动脉粥样硬化。在本研究中,我们试图研究姜黄素是否对VSMC增殖有任何影响以及潜在的机制。我们的数据显示姜黄素浓度依赖性地消除了Chol:MbetaCD诱导的原代大鼠VSMC的增殖。为了探索潜在的细胞和分子机制,我们发现姜黄素能够恢复被Chol:MbetaCD处理降低的caveolin-1表达。此外,姜黄素消除了由Chol:MbetaCD诱导的原代大鼠VSMC中磷酸化-ERK1 / 2的增加和ERK1 / 2的核积累,从而抑制了由Chol:MbetaCD刺激的AP-1启动子活性。此外,姜黄素能够逆转由Chol:MbetaCD诱导的细胞周期进程,这在存在Chol:MbetaCD的情况下受到下调cyclinD1和E2F启动子活性的进一步支持。综合来看,我们的数据表明姜黄素通过恢复Caveolin-1的表达来抑制Chol:MbetaCD诱导的VSMC增殖,从而导致过度激活的ERK信号传导受到抑制,并导致细胞周期停滞在G1 / S期。这些新发现支持姜黄素在心血管疾病中的有益潜力。

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