Department of Cardiology, The Fourth People's Hospital of Jinan, Jinan 250031, Shandong, PR China.
Department of Cardiology, The Fourth People's Hospital of Jinan, Jinan 250031, Shandong, PR China.
Mol Cell Probes. 2018 Apr;38:38-44. doi: 10.1016/j.mcp.2017.12.002. Epub 2017 Dec 24.
Berberine (BBR) is an isoquinnoline derivative alkaloid extracted from Rhizoma Coptidis that has the potential to protect myocardial tissues from ischemia/reperfusion (I/R) injuries. We attempted to evaluate the effect of BBR on the proliferation and apoptosis of a hypoxia/reoxygenation (H/R) cell model and to reveal the mechanism driving the improving function of BBR myocardial tissues. The H/R cell model was established using H9c2 rat cardiac myoblasts. The cell viability, apoptotic rates, and cell cycle distribution were measured with CCK-8 assay and flow cytometry. The expression of Smad7 and caspase-3 were determined both at mRNA and protein levels. In addition, expression of Smad7 was knocked down with specific siRNA and the effect of the interference was assessed. The proliferation ability of H/R cells was enhanced after the administration of BBR, and the apoptosis and cell cycle arrest due to H/R injury were also alleviated by BBR treatment. Moreover, the treatment of BBR on H/R injury functioned through the Smad7-activation-induced attenuating of apoptosis by activating Smad7 pathway which resulted suppression of caspase 3 expression and activity. The knockdown of Smad7 confirmed our conclusion about the key role of Smad7 in the function of BBR administration. However, our results as well as some previous studies also demonstrated that the effect of BBR was tissue and protocol specific, and the underlying mechanism related to the BBR treatment was so complicated that practical application should be carefully investigated based on certain diseases and patients.
小檗碱(BBR)是从黄连中提取的一种异喹啉衍生物生物碱,具有保护心肌组织免受缺血/再灌注(I/R)损伤的潜力。我们试图评估 BBR 对缺氧/复氧(H/R)细胞模型增殖和凋亡的影响,并揭示驱动 BBR 改善心肌组织功能的机制。使用 H9c2 大鼠心肌细胞建立 H/R 细胞模型。通过 CCK-8 测定和流式细胞术测定细胞活力、凋亡率和细胞周期分布。通过 mRNA 和蛋白质水平测定 Smad7 和 caspase-3 的表达。此外,用特异性 siRNA 敲低 Smad7 的表达,并评估干扰的效果。BBR 处理后 H/R 细胞的增殖能力增强,BBR 处理减轻了 H/R 损伤引起的细胞凋亡和细胞周期阻滞。此外,BBR 对 H/R 损伤功能的作用是通过激活 Smad7 通路激活 Smad7 诱导的凋亡减弱来实现的,这导致 caspase 3 表达和活性的抑制。Smad7 的敲低证实了我们关于 Smad7 在 BBR 给药功能中的关键作用的结论。然而,我们的结果以及一些先前的研究也表明,BBR 的作用是组织和方案特异性的,与 BBR 治疗相关的潜在机制非常复杂,实际应用应根据某些疾病和患者进行仔细研究。