Yu Shan, Wang Ling, Chen Mengdie, Chen Yanjun, Peng Zhenbo
Ningbo Key Laboratory of High Performance Petroleum Resin Preparation Engineering and Technology, Chemical Engineering Department, Ningbo Polytechnic, 388 Lushandong Road, Ningbo 315800, China.
Inosphere Science &Technology Achievement Transformation Center, Ningbo Polytechnic, 388 Lushandong Road, Ningbo 315800, China.
Biomacromolecules. 2025 Apr 14;26(4):2378-2389. doi: 10.1021/acs.biomac.4c01752. Epub 2025 Apr 1.
Myocardial infarction (MI) remains one of the leading causes of mortality worldwide, necessitating advanced therapeutic strategies to address the resulting electrical disconnection and pathological remodeling. This study developed a conductive hydrogel by covalently cross-linking silk fibroin and hyaluronic acid, integrating MXene nanosheets to mimic the extracellular matrix (ECM). Results demonstrated that the incorporation of MXene significantly enhanced the hydrogel's conductivity, with SH-M5 exhibiting the highest conductivity of 0.32 S/m. The SH-M5 hydrogel effectively improved electrical signal transmission and enhanced the recovery of the left ventricular function in myocardial infarction. These findings underscore the transformative role of MXene in enhancing the functional properties of hydrogels for myocardial repair. The conductive hydrogel demonstrated a unique capacity to integrate mechanical reinforcement, electrical conductivity, and biocompatibility, presenting a promising platform for treating myocardial infarction and advancing regenerative medicine.
心肌梗死(MI)仍然是全球主要的死亡原因之一,因此需要先进的治疗策略来解决由此产生的电连接中断和病理重塑问题。本研究通过将丝素蛋白和透明质酸共价交联,整合MXene纳米片以模拟细胞外基质(ECM),开发了一种导电水凝胶。结果表明,MXene的加入显著提高了水凝胶的导电性,SH-M5表现出最高的导电性,为0.32 S/m。SH-M5水凝胶有效改善了电信号传输,并增强了心肌梗死模型左心室功能的恢复。这些发现强调了MXene在增强水凝胶用于心肌修复功能特性方面的变革性作用。这种导电水凝胶展示了整合机械增强、导电性和生物相容性的独特能力,为治疗心肌梗死和推进再生医学提供了一个有前景的平台。