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原位喷涂仿生黏附性导电水凝胶用于海绵体神经修复。

In Situ-Sprayed Bioinspired Adhesive Conductive Hydrogels for Cavernous Nerve Repair.

机构信息

National Engineering Research Centre for Tissue Restoration and Reconstruction, South China University of Technology, Guangzhou, 510006, China.

School of Materials Science and Engineering, South China University of Technology, Guangzhou, 510640, China.

出版信息

Adv Mater. 2024 May;36(19):e2311264. doi: 10.1002/adma.202311264. Epub 2024 Feb 16.

Abstract

Cavernous nerve injury (CNI), resulting in erectile dysfunction (ED), poses a significant threat to the quality of life for men. Strategies utilizing conductive hydrogels have demonstrated promising results for the treatment of peripheral nerves with a large diameter (>2 mm). However, integrating convenient minimally invasive operation, antiswelling and immunomodulatory conductive hydrogels for treating small-diameter injured cavernous nerves remains a great challenge. Here, a sprayable adhesive conductive hydrogel (GACM) composed of gelatin, adenine, carbon nanotubes, and mesaconate designed for cavernous nerve repair is developed. Multiple hydrogen bonds provide GACM with excellent adhesive and antiswelling properties, enabling it to establish a conformal electrical bridge with the damaged nerve and aiding in the regeneration process. Additionally, mesaconate-loaded GACM suppresses the release of inflammatory factors by macrophages and promotes the migration and proliferation of Schwann cells. In vivo tests demonstrate that the GACM hydrogel repairs the cavernous nerve and restores erectile function and fertility. Furthermore, the feasibility of sprayable GACM in minimally invasive robotic surgery in beagles is validated. Given the benefits of therapeutic effectiveness and clinical convenience, the research suggests a promising future for sprayable GACM materials as advanced solutions for minimally invasive nerve repair.

摘要

海绵体神经损伤(CNI)导致勃起功能障碍(ED),严重威胁男性生活质量。利用导电水凝胶的策略已显示出治疗大直径(>2mm)周围神经的有前景的结果。然而,整合方便的微创操作、抗肿胀和免疫调节的导电水凝胶来治疗小直径损伤的海绵体神经仍然是一个巨大的挑战。本文设计了一种用于海绵体神经修复的可喷涂粘性导电水凝胶(GACM),由明胶、腺嘌呤、碳纳米管和间戊二酸组成。多种氢键使 GACM 具有优异的粘性和抗肿胀性能,使其能够与受损神经建立一致的电桥,并有助于再生过程。此外,间戊二酸负载的 GACM 抑制巨噬细胞释放炎症因子,并促进施万细胞的迁移和增殖。体内试验表明,GACM 水凝胶修复了海绵体神经,恢复了勃起功能和生育能力。此外,还验证了可喷涂 GACM 在犬微创机器人手术中的可行性。鉴于治疗效果和临床便利性的优势,该研究表明可喷涂 GACM 材料作为微创神经修复的先进解决方案具有广阔的前景。

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