The State Key Laboratory of Transvascular Implantation Devices, Zhejiang University, Hangzhou 310009, China; MOE Key Laboratory of Macromolecular Synthesis and Functionalization, International Research Center for X Polymers, Department of Polymer Science and Engineering, Zhejiang University, Hangzhou 310058, China.
Department of Cardiology and Institute of Vascular Medicine, Peking University Third Hospital, Key Laboratory of Molecular Cardiovascular Science, Ministry of Education, Beijing 100191, China.
Biomaterials. 2025 Jan;312:122732. doi: 10.1016/j.biomaterials.2024.122732. Epub 2024 Jul 30.
Fully restoring the lost population of cardiomyocytes and heart function remains the greatest challenge in cardiac repair post myocardial infarction. In this study, a pioneered highly ROS-eliminating hydrogel was designed to enhance miR-19a/b induced cardiomyocyte proliferation by lowering the oxidative stress and continuously releasing miR-19a/b in infarcted myocardium in situ. In vivo lineage tracing revealed that ∼20.47 % of adult cardiomyocytes at the injected sites underwent cell division in MI mice. In MI pig the infarcted size was significantly reduced from 40 % to 18 %, and thereby marked improvement of cardiac function and increased muscle mass. Most importantly, our treatment solved the challenge of animal death--all the treated pigs managed to live until their hearts were harvested at day 50. Therefore, our strategy provides clinical conversion advantages and safety for healing damaged hearts and restoring heart function post MI, which will be a powerful tool to battle cardiovascular diseases in patients.
完全恢复心肌梗死后丢失的心肌细胞和心功能仍然是心脏修复的最大挑战。在这项研究中,设计了一种开创性的高 ROS 清除水凝胶,通过降低氧化应激和原位持续释放 miR-19a/b,增强 miR-19a/b 诱导的心肌细胞增殖。体内谱系追踪显示,在 MI 小鼠的注射部位,约有 20.47%的成年心肌细胞发生了细胞分裂。在 MI 猪中,梗死面积从 40%显著减少到 18%,从而显著改善了心脏功能和增加了肌肉质量。最重要的是,我们的治疗方法解决了动物死亡的挑战——所有接受治疗的猪都存活到第 50 天心脏被取出。因此,我们的策略为 MI 后受损心脏的愈合和心功能的恢复提供了临床转化优势和安全性,这将成为对抗患者心血管疾病的有力工具。