State and Local Joint Engineering Laboratory for Novel Functional Polymeric Materials, Jiangsu Key Laboratory of Advanced Functional Polymer Design and Application, College of Chemistry, Chemical Engineering and Materials Science, Soochow University, Suzhou, 215123, China.
College of Life Science, Mudanjiang Medical University, Mudanjiang, 157011, China.
Adv Sci (Weinh). 2024 Jun;11(21):e2400898. doi: 10.1002/advs.202400898. Epub 2024 Apr 22.
Fabrication of versatile hydrogels in a facile and effective manner represents a pivotal challenge in the field of biomaterials. Herein, a novel strategy is presented for preparing on-demand degradable hydrogels with multilevel responsiveness. By employing selenol-dichlorotetrazine nucleophilic aromatic substitution (SAr) to synthesize hydrogels under mild conditions in a buffer solution, the necessity of additives or posttreatments can be obviated. The nucleophilic and redox reactions between selenol and tetrazine culminate in the formation of three degradable chemical bonds-diselenide, aryl selenide, and dearomatized selenide-in a single, expeditious step. The resultant hydrogel manifests exceptional adaptability to intricate environments in conjunction with self-healing and on-demand degradation properties. Furthermore, the resulting material demonstrated light-triggered antibacterial activity. Animal studies further underscore the potential of integrating metformin into Se-Tz hydrogels under green light irradiation, as it effectively stimulates angiogenesis and collagen deposition, thereby fostering efficient wound healing. In comparison to previously documented hydrogels, Se-Tz hydrogels exhibit controlled degradation and drug release, outstanding antibacterial activity, mechanical robustness, and bioactivity, all without the need for costly and intricate preparation procedures. These findings underscore Se-Tz hydrogels as a safe and effective therapeutic option for diabetic wound dressings.
以简单有效的方式制备多功能水凝胶是生物材料领域的一个关键挑战。本文提出了一种新的策略,用于制备具有多层次响应的按需降解水凝胶。通过在缓冲溶液中使用硒醇-二氯四嗪亲核芳香取代(SAr)在温和条件下合成水凝胶,可以避免添加物或后处理的需要。硒醇和四嗪之间的亲核和氧化还原反应最终在单个快速步骤中形成三种可降解化学键-二硒键、芳基硒键和去芳构化硒键。所得水凝胶表现出对复杂环境的出色适应性,同时具有自修复和按需降解的特性。此外,所得到的材料表现出光触发的抗菌活性。动物研究进一步强调了在绿光照射下将二甲双胍整合到 Se-Tz 水凝胶中的潜力,因为它可以有效刺激血管生成和胶原蛋白沉积,从而促进伤口的有效愈合。与之前报道的水凝胶相比,Se-Tz 水凝胶具有可控的降解和药物释放、出色的抗菌活性、机械强度和生物活性,所有这些都不需要昂贵且复杂的制备程序。这些发现强调了 Se-Tz 水凝胶作为糖尿病伤口敷料的一种安全有效的治疗选择。