Guo Chuan, Wu Ye, Li Weilong, Wang Yu, Kong Qingquan
Orthopedic Research Institute, Department of Orthopedics, West China Hospital, Sichuan University, Chengdu 610041, Sichuan, China.
Joint Research Institute of Altitude Health, West China Hospital, Sichuan University, Chengdu, Sichuan 610041, China.
ACS Appl Mater Interfaces. 2022 Jul 13;14(27):30480-30492. doi: 10.1021/acsami.2c02725. Epub 2022 Apr 25.
Microenvironment-responsive hydrogels present high potential in treating refractory wounds due to their capability of on-demand drug release. In this study, a specially designed hydrogel with smart targeting of refractory wound characteristics was designed to treat chronically infected diabetic wounds. Aminated gelatin reacted with oxidized dextran, forming a hydrogel cross-linked with a dynamic Schiff base, which is sensitive to the low-pH environment in refractory wounds. Nano-ZnO was loaded into the hydrogel for killing microbes. A Paeoniflorin-encapsulated micelle with a ROS-responsive property was fixed to the skeleton of the hydrogel via a Schiff base bond for low-pH- and ROS-stimulated angiogenic activity. The sequential responsiveness of the novel hydrogel enabled smart rescue of the deleterious microenvironment in refractory wounds. This highly biocompatible hydrogel demonstrated antibacterial and angiogenic abilities and significantly promoted healing of chronically infected diabetic wounds via sequential hemostatic, microbe killing, and angiogenic activities. This microenvironment-responsive hydrogel loaded with nZnO and Pf-encapsulated micelles holds great potential as a location-specific dual-response delivery platform for curing refractory, chronically infected diabetic wounds.
微环境响应性水凝胶因其按需释放药物的能力而在治疗难愈合伤口方面具有很高的潜力。在本研究中,设计了一种针对难愈合伤口特征进行智能靶向的特殊水凝胶,用于治疗慢性感染的糖尿病伤口。胺化明胶与氧化葡聚糖反应,形成一种通过动态席夫碱交联的水凝胶,该席夫碱对难愈合伤口的低pH环境敏感。将纳米氧化锌负载到水凝胶中以杀灭微生物。通过席夫碱键将具有ROS响应特性的芍药苷包封胶束固定在水凝胶骨架上,用于低pH和ROS刺激的血管生成活性。新型水凝胶的顺序响应性能够智能地挽救难愈合伤口中的有害微环境。这种高度生物相容性的水凝胶具有抗菌和血管生成能力,并通过顺序止血、杀灭微生物和血管生成活性显著促进慢性感染糖尿病伤口的愈合。这种负载有nZnO和芍药苷包封胶束的微环境响应性水凝胶作为一种用于治疗难治性、慢性感染糖尿病伤口的位点特异性双响应递送平台具有巨大潜力。