Deng Yan, Yang Cheng, Zhu Yuanyuan, Liu Wenyu, Li Heli, Wang Liping, Chen Wei, Wang Zheng, Wang Lin
Nano Lett. 2022 Apr 13;22(7):2702-2711. doi: 10.1021/acs.nanolett.1c04573. Epub 2022 Mar 24.
The therapeutic efficacy of wound infections caused by bacteria is challenged by limited wound repairs and a high risk of inflammation. Microneedles have been generated for wound healing since they are able to efficiently pierce the epidermis and deliver drugs. However, regular microneedles cannot provide oriented traction to "shrink" the wound area, and most microneedles are made of inert polymers, which mainly serve as a support but rarely participate in the following physiological processes. Herein, inspired by lamprey teeth, we designed oriented antibacterial sericin microneedles with dually functionalized needles to provide penetration and directional traction. Sericin, derived from silkworm cocoons, was employed to fabricate microneedle tips, significantly improving skin repair via hair follicle regeneration and angiogenesis. Besides, zinc oxide nanoparticles were integrated as an antibacterial module, endowing the OASM with high bacterial suppression. It is believed that the synergy of these systems may effectively heal infected wounds, suggesting its clinically translational potential.
细菌引起的伤口感染的治疗效果受到伤口修复有限和炎症风险高的挑战。微针能够有效穿透表皮并递送药物,因此已被用于伤口愈合。然而,常规微针无法提供定向牵引力来“收缩”伤口面积,并且大多数微针由惰性聚合物制成,主要起支撑作用,很少参与后续的生理过程。在此,受七鳃鳗牙齿的启发,我们设计了具有双功能化针头的定向抗菌丝胶蛋白微针,以提供穿透和定向牵引力。源自蚕茧的丝胶蛋白被用于制造微针尖端,通过毛囊再生和血管生成显著改善皮肤修复。此外,整合了氧化锌纳米颗粒作为抗菌模块,赋予定向抗菌丝胶蛋白微针高细菌抑制能力。相信这些系统的协同作用可能有效治愈感染伤口,表明其具有临床转化潜力。