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用于骨再生的具有装甲外泌体递送功能的多酚介导的电活性水凝胶。

Polyphenol-Mediated Electroactive Hydrogel with Armored Exosomes Delivery for Bone Regeneration.

作者信息

Zheng Jingcheng, He Jiachen, Wu Jianjun, Yu Yongle, Fu Yan, Yin Siwei, Li Keyun, Li Yining, Cai Limin, Du Yikuan, Lu Xiong, Xie Chaoming

机构信息

The First School of Clinical Medicine, Southern Medical University, Guangzhou, Guangdong 510515, China.

The Tenth Affiliated Hospital, Southern Medical University (Dongguan People's Hospital), Dongguan, Guangdong 523059, China.

出版信息

ACS Nano. 2025 May 13;19(18):17796-17812. doi: 10.1021/acsnano.5c03256. Epub 2025 May 1.

Abstract

Prolonged oxidative stress and reduced activity of mesenchymal stem cells are significant barriers to effective bone repair. Current therapeutic approaches often suffer from limited long-term efficacy due to inefficient exosome delivery and the degradation of biological materials. Here, we present an electroactive gelatin methacryloyl hydrogel incorporating a tannic acid-mediated conductive polypyrrole microfiber network and exosomes armored with a metal-polyphenol network, designed to mitigate chronic inflammation and enhance bone healing. The iron-tannic acid complex forms a protective coating on the surface of exosomes, shielding them from damage in inflammatory environments and promoting osteoblast differentiation. This is achieved by enabling exosomes to evade lysosomal degradation through the proton sponge effect. Additionally, the phenolic hydroxyl groups of tannic acid effectively scavenge reactive oxygen species at injury sites. By delivering electrical stimulation to mimic the native electrophysiological environment, the catechol-quinone redox balance is maintained, providing sustained antioxidant effects. In a rat bone defect model, this multifunctional hydrogel demonstrated robust activity for bone regeneration. These findings demonstrated the ability of this electroactive hydrogel system to enhance exosome delivery, provide long-term antioxidative activity, and promote osteogenic differentiation, offering a promising therapeutic platform for bone tissue engineering.

摘要

间充质干细胞的长期氧化应激和活性降低是有效骨修复的重大障碍。由于外泌体递送效率低下和生物材料降解,目前的治疗方法往往长期疗效有限。在此,我们展示了一种电活性甲基丙烯酰化明胶水凝胶,其包含单宁酸介导的导电聚吡咯微纤维网络和包裹有金属-多酚网络的外泌体,旨在减轻慢性炎症并促进骨愈合。铁-单宁酸复合物在外泌体表面形成一层保护涂层,使其在炎症环境中免受损伤并促进成骨细胞分化。这是通过使外泌体通过质子海绵效应逃避溶酶体降解来实现的。此外,单宁酸的酚羟基可有效清除损伤部位的活性氧。通过传递电刺激以模拟天然电生理环境,维持儿茶酚-醌氧化还原平衡,提供持续的抗氧化作用。在大鼠骨缺损模型中,这种多功能水凝胶显示出强大的骨再生活性。这些发现证明了这种电活性水凝胶系统增强外泌体递送、提供长期抗氧化活性和促进成骨分化的能力,为骨组织工程提供了一个有前景的治疗平台。

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