Celastrol通过抑制BMP2/Smad1/5信号传导来减缓动脉和瓣膜钙化。

IF 5.3 2区 医学 Q1 Biochemistry, Genetics and Molecular Biology Journal of Cellular and Molecular Medicine Pub Date : 2020-11-01 Epub Date: 2020-09-20 DOI:10.1111/jcmm.15779
Zhongping Su, Pengyu Zong, Ji Chen, Shuo Yang, Yihui Shen, Yan Lu, Chuanxi Yang, Xiangqing Kong, Yanhui Sheng, Wei Sun
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引用次数: 14

摘要

血管钙化是慢性肾脏疾病(CKD)死亡率和发病率的重要危险因素。不幸的是,到目前为止,还没有针对CKD血管钙化的特定药物。在本研究中,我们探讨了celastrol对高钙诱导的血管钙化的抑制作用及其分子机制。细胞增殖实验表明,当其浓度大于0.6 μmol/L时,雷公藤红素可抑制主动脉瓣间质细胞(VIC)和血管平滑肌细胞(VSMC)的增殖。0.8 μmol/L雷公藤红素对AVICs和VSMCs成骨基因表达和高钙诱导的钙沉积均有抑制作用。在腺嘌呤联合维生素D诱导的小鼠血管钙化模型中,茜素红和免疫染色显示,celastrol抑制了促钙化基因的表达和主动脉壁和主动脉瓣组织中的钙沉积。在分子水平上,在体外和体内均可抑制高钙培养基诱导的BMP2、磷酸化Smad1/5 (p-Smad1/5)和非磷酸化β-catenin (n-p-β-catenin)的升高。此外,BMP2过表达通过恢复p-Smad1/5和n-p-β-catenin的减少,逆转了celastrol的抗钙化作用。此外,celastrol还能抑制高钙诱导的BMPRII上调和Smad6下调,这种保护作用可被BMP2过表达所消除。总之,我们的数据首次证明了celastrol通过抑制BMP2/Smad1/5信号传导来减弱高钙诱导的动脉和瓣膜钙化,这可能为CKD患者动脉和瓣膜钙化提供一种新的治疗策略。
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Celastrol attenuates arterial and valvular calcification via inhibiting BMP2/Smad1/5 signalling.

Vascular calcification is an important risk factor for the mortality and morbidity in chronic kidney disease (CKD). Unfortunately, until now there is no certain medication targeting vascular calcification in CKD. In this study, we explored the inhibitory effect of celastrol on high calcium-induced vascular calcification and the underlying molecular mechanisms. Cell proliferation assay showed that celastrol inhibited aortic valve interstitial cell (VIC) and vascular smooth muscle cell (VSMC) proliferation when its concentration was higher than 0.6 μmol/L. 0.8 μmol/L celastrol inhibited the expression of osteogenic genes and calcium deposition induced by high-calcium medium in both AVICs and VSMCs. In mouse vascular calcification model induced by adenine combined with vitamin D, alizarin red and immunostaining showed that celastrol inhibited pro-calcification gene expression and calcium deposition in aortic wall and aortic valve tissues. At the molecular level, celastrol inhibited the increase of BMP2, phosphorylated Smad1/5 (p-Smad1/5) and non-phosphorylated β-catenin (n-p-β-catenin) induced by high-calcium medium both in vitro and in vivo. Also, BMP2 overexpression reversed the anti-calcification effects of celastrol by recovering the decrease of p-Smad1/5 and n-p-β-catenin. Furthermore, celastrol prevented the up-regulation of BMPRII and down-regulation of Smad6 induced by high calcium, and this protectory effect can be abolished by BMP2 overexpression. In conclusion, our data for the first time demonstrate that celastrol attenuates high calcium-induced arterial and valvular calcification by inhibiting BMP2/Smad1/5 signalling, which may provide a novel therapeutic strategy for arterial and valvular calcification in patients with CKD.

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来源期刊
CiteScore
10.00
自引率
1.90%
发文量
496
审稿时长
28 weeks
期刊介绍: Bridging physiology and cellular medicine, and molecular biology and molecular therapeutics, Journal of Cellular and Molecular Medicine publishes basic research that furthers our understanding of the cellular and molecular mechanisms of disease and translational studies that convert this knowledge into therapeutic approaches.
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