Wei Shikun, Wang Zhongshan, Liang Xiaoyan, Xiong Tingliang, Kang Zhengyang, Lei Sheng, Wu Bin, Cheng Biao
Department of Orthopedics, The Second People's Hospital of Panyu District Guangzhou 511400, Guangdong, China.
Department of Burn and Plastic Surgery, General Hospital of Southern Theater Command, PLA Guangzhou 510010, Guangdong, China.
Am J Transl Res. 2023 Jul 15;15(7):4467-4486. eCollection 2023.
Wound infection remains a major challenge for health professionals, because it delays wound healing and increases the overall cost and morbidity. Therefore, the development of new biomaterials with new antibacterial properties and healing effects remains a dire clinical need. To solve this problem, we developed silver nanoparticles embedded in γ-cyclodextrin metal-organic frameworks (Ag@MOF) and platelet-rich plasma (PRP)-loaded hydrogel systems based on methacrylated silk fibroin (SFMA) and methacrylate hyaluronic acid (HAMA) as Ag ion and growth factor delivery vehicles for inhibiting the growth of drug-resistant bacteria and promoting wound healing. The prepared SFMA/HAMA hydrogel demonstrated good rheological properties, swelling capability, appropriate mechanical properties and controllable biodegradability. The SFMA/HAMA/Ag@MOF/PRP hydrogel showed sustained release profiles of Ag ions and EGF. The SFMA/HAMA/Ag@MOF hydrogel have good inherent antibacterial properties against both gram-negative bacteria and gram-positive bacteria. The prepared hydrogel showed excellent cytocompatibility and could stimulate the growth and proliferation rate of NIH-3T3 cells. experiments showed that SFMA/HAMA/Ag@MOF/PRP hydrogel treatment enhanced the healing of full-thickness wounds, reduced inflammatory cell infiltration, and promoted re-epithelialization and collagen synthesis. All results indicated that the prepared hydrogel has tremendous potential to reduce wound infections and improve wound healing.
伤口感染仍然是医疗专业人员面临的重大挑战,因为它会延迟伤口愈合,增加总体成本和发病率。因此,开发具有新型抗菌特性和愈合效果的新型生物材料仍然是迫切的临床需求。为了解决这个问题,我们开发了嵌入γ-环糊精金属有机框架(Ag@MOF)的银纳米颗粒和基于甲基丙烯酸化丝素蛋白(SFMA)和甲基丙烯酸透明质酸(HAMA)的富含血小板血浆(PRP)负载水凝胶系统,作为银离子和生长因子的递送载体,用于抑制耐药菌生长和促进伤口愈合。制备的SFMA/HAMA水凝胶表现出良好的流变学性能、溶胀能力、适当的机械性能和可控的生物降解性。SFMA/HAMA/Ag@MOF/PRP水凝胶显示出银离子和表皮生长因子(EGF)的缓释特性。SFMA/HAMA/Ag@MOF水凝胶对革兰氏阴性菌和革兰氏阳性菌均具有良好的固有抗菌性能。制备的水凝胶表现出优异的细胞相容性,能够刺激NIH-3T3细胞的生长和增殖速率。实验表明,SFMA/HAMA/Ag@MOF/PRP水凝胶治疗可促进全层伤口愈合,减少炎性细胞浸润,并促进再上皮化和胶原蛋白合成。所有结果表明,制备的水凝胶在减少伤口感染和改善伤口愈合方面具有巨大潜力。