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白藜芦醇通过沉默调节蛋白3通路介导线粒体功能,以改善心房颤动中的异常代谢重塑。

Resveratrol mediates mitochondrial function through the sirtuin 3 pathway to improve abnormal metabolic remodeling in atrial fibrillation.

作者信息

Cao Yuejuan, Cui Li, Tuo Shaoyong, Liu Hongze, Cui Shaonan

机构信息

Department of Cardiology, Tianjin Union Medical Center, Tianjin.

Department of Vascular Surgery, Tianjin Union Medical Center, Tianjin.

出版信息

Eur J Histochem. 2024 Apr 24;68(2):4004. doi: 10.4081/ejh.2024.4004.

Abstract

This study investigated the impact of resveratrol on abnormal metabolic remodeling in atrial fibrillation (AF) and explored potential molecular mechanisms. An AF cell model was established by high-frequency electrical stimulation of HL-1 atrial muscle cells. Resveratrol concentrations were optimized using CCK-8 and flow cytometry. AF-induced increases in ROS and mitochondrial calcium, along with decreased adenosine triphosphate (ATP) and mitochondrial membrane potential, were observed. Resveratrol mitigated these changes and maintained normal mitochondrial morphology. Moreover, resveratrol acted through the SIRT3-dependent pathway, as evidenced by its ability to suppress AF-induced acetylation of key metabolic enzymes. SIRT3 overexpression controls acetylation modifications, suggesting its regulatory role. In conclusion, resveratrol's SIRT3-dependent pathway intervenes in AF-induced mitochondrial dysfunction, presenting a potential therapeutic avenue for AF-related metabolic disorders. This study sheds light on the role of resveratrol in mitigating AF-induced mitochondrial remodeling and highlights its potential as a novel treatment for AF.

摘要

本研究调查了白藜芦醇对心房颤动(AF)异常代谢重塑的影响,并探索了潜在的分子机制。通过对HL-1心房肌细胞进行高频电刺激建立AF细胞模型。使用CCK-8和流式细胞术优化白藜芦醇浓度。观察到AF诱导的活性氧(ROS)和线粒体钙增加,以及三磷酸腺苷(ATP)和线粒体膜电位降低。白藜芦醇减轻了这些变化并维持了正常的线粒体形态。此外,白藜芦醇通过SIRT3依赖性途径发挥作用,这一点通过其抑制AF诱导的关键代谢酶乙酰化的能力得到证明。SIRT3过表达控制乙酰化修饰,表明其调节作用。总之,白藜芦醇的SIRT3依赖性途径干预AF诱导的线粒体功能障碍,为AF相关的代谢紊乱提供了一条潜在的治疗途径。本研究揭示了白藜芦醇在减轻AF诱导的线粒体重塑中的作用,并突出了其作为AF新型治疗方法的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee23/11064893/ce414313bcc6/ejh-68-2-4004-g001.jpg

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