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p53/miR-29a-3p 轴介导益母草碱对血管紧张素Ⅱ刺激的大鼠心肌成纤维细胞的抗纤维化作用。

The p53/miR-29a-3p axis mediates the antifibrotic effect of leonurine on angiotensin II-stimulated rat cardiac fibroblasts.

机构信息

Department of Pharmacy, The First Affiliated Hospital of Chongqing Medical University, Chongqing, China; Institute of Life Science, Chongqing Medical University, Chongqing, China.

Institute of Life Science, Chongqing Medical University, Chongqing, China.

出版信息

Exp Cell Res. 2023 May 1;426(1):113556. doi: 10.1016/j.yexcr.2023.113556. Epub 2023 Mar 16.

Abstract

Overactivation of cardiac fibroblasts (CFs) is one of the main causes of myocardial fibrosis (MF), and inhibition of CF activation is a crucial strategy for MF therapy. A previous study by our group demonstrated that leonurine (LE) effectively inhibits collagen synthesis and myofibroblast generation originated from CFs, and eventually mitigates the progression of MF (where miR-29a-3p is likely to be a vital mediator). However, the underlying mechanisms involved in this process remain unknown. Thus, the present study aimed to investigate the precise role of miR-29a-3p in LE-treated CFs, and to elucidate the pharmacological effects of LE on MF. Neonatal rat CFs were isolated and stimulated by angiotensin II (Ang II) to mimic the pathological process of MF in vitro. The results show that LE distinctly inhibits collagen synthesis, as well as the proliferation, differentiation and migration of CFs, all of which could be induced by Ang II. In addition, LE promotes apoptosis in CFs under Ang II stimulation. During this process, the down-regulated expressions of miR-29a-3p and p53 are partly restored by LE. Either knockdown of miR-29a-3p or inhibition of p53 by PFT-α (a p53 inhibitor) blocks the antifibrotic effect of LE. Notably, PFT-α suppresses miR-29a-3p levels in CFs under both normal and Ang II-treated conditions. Furthermore, ChIP analysis confirmed that p53 is bound to the promoter region of miR-29a-3p, and directly regulates its expression. Overall, our study demonstrates that LE upregulates p53 and miR-29a-3p expression, and subsequently inhibits CF overactivation, suggesting that the p53/miR-29a-3p axis may play a crucial role in mediating the antifibrotic effect of LE against MF.

摘要

心肌成纤维细胞(CFs)的过度激活是心肌纤维化(MF)的主要原因之一,抑制 CF 激活是 MF 治疗的关键策略。我们小组的先前研究表明,益母草碱(LE)可有效抑制 CF 来源的胶原合成和肌成纤维细胞生成,最终减轻 MF 的进展(miR-29a-3p 可能是重要的介导物)。然而,这一过程中涉及的潜在机制尚不清楚。因此,本研究旨在探讨 miR-29a-3p 在 LE 处理的 CFs 中的精确作用,并阐明 LE 对 MF 的药理作用。分离新生大鼠 CFs 并用血管紧张素 II(Ang II)刺激以模拟 MF 的体外病理过程。结果表明,LE 明显抑制胶原合成以及 Ang II 诱导的 CFs 的增殖、分化和迁移。此外,LE 在 Ang II 刺激下促进 CFs 凋亡。在此过程中,LE 部分恢复了 miR-29a-3p 和 p53 的下调表达。miR-29a-3p 的敲低或 p53 抑制剂 PFT-α(p53 抑制剂)阻断了 LE 的抗纤维化作用。值得注意的是,PFT-α 在正常和 Ang II 处理条件下均抑制 CFs 中的 miR-29a-3p 水平。此外,ChIP 分析证实 p53 结合于 miR-29a-3p 的启动子区域,并直接调控其表达。总之,本研究表明 LE 上调 p53 和 miR-29a-3p 的表达,进而抑制 CF 的过度激活,提示 p53/miR-29a-3p 轴可能在介导 LE 对 MF 的抗纤维化作用中发挥关键作用。

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