Sun Yujie, Miao Tengfei, Wang Yu, Wang Xiaochen, Lin Jie, Zhao Nana, Hu Yang, Xu Fu-Jian
Department of Dental Implant Center, Beijing Stomatological Hospital, School of Stomatology, Capital Medical University, Beijing 100050, China.
Key Lab of Biomedical Materials of Natural Macromolecules (Beijing University of Chemical Technology, Ministry of Education), Beijing Laboratory of Biomedical Materials, Beijing University of Chemical Technology, Beijing, 100029, China.
Biomater Sci. 2023 Mar 28;11(7):2405-2418. doi: 10.1039/d2bm02049a.
Natural polymers have been particularly appealing for constructing hemostatic materials/devices, but it is still desirable to develop new natural polymer-based biomaterials with balanced hemostatic and wound-healing performance. In this work, a natural polyphenol-functionalized chitosan/gelatin sponge (PCGS) was prepared by the lyophilization of a chitosan/gelatin mixture solution (under a self-foaming condition to prepare the CGS) and subsequent chemical cross-linking with procyanidin (PC). Compared with the original CGS, PCGS exhibited an enhanced liquid-absorption ability, reduced surface charges, and similar/low hemolysis rate. Benefiting from such a liquid-absorption ability (∼4000% for whole blood and normal saline) and moderate surface charges, PCGS exhibited high hemostatic property and promising hemostatic performance in an femoral-artery-injury model. In addition, PCGS possessed higher antioxidant property and slightly decreased antibacterial ability than CGS, owing to the incorporation of PC. The feasibility of PCGS for treating infected wounds was further confirmed in an infected-tooth-extraction model, as the typical complication of intractable tooth-extraction bleeding. The present work demonstrated a facile approach for developing multifunctional hemostatic materials through the flexible management of natural polymers and polyphenols.
天然聚合物在构建止血材料/装置方面特别具有吸引力,但开发具有平衡止血和伤口愈合性能的新型天然聚合物基生物材料仍然是很有必要的。在这项工作中,通过对壳聚糖/明胶混合溶液进行冻干(在自发泡条件下制备CGS),随后与原花青素(PC)进行化学交联,制备了一种天然多酚功能化的壳聚糖/明胶海绵(PCGS)。与原始的CGS相比,PCGS表现出增强的液体吸收能力、降低的表面电荷以及相似/低的溶血率。得益于这种液体吸收能力(对全血和生理盐水约为4000%)和适度的表面电荷,PCGS在股动脉损伤模型中表现出高止血性能和良好的止血效果。此外,由于PC的掺入,PCGS比CGS具有更高的抗氧化性能和略低的抗菌能力。在拔牙后出血这一典型的难治性拔牙并发症的感染拔牙模型中,进一步证实了PCGS治疗感染伤口的可行性。本工作展示了一种通过灵活调控天然聚合物和多酚来开发多功能止血材料的简便方法。