Yang Yaozhen, Wang Xue, Zhai Wenye, Xu Jing, Hou Zhaosheng, She Pengbo, Li Xiuxiu, Ma Xuanxuan, Wang Xiaolong, Liu Wentao
Shandong Provincial Key Laboratory of Molecular Engineering, School of Chemistry and Chemical Engineering, Qilu University of Technology (Shandong Academy of Sciences), Jinan 250353, P. R. China.
College of Chemistry, Chemical Engineering and Materials Science, Shandong Normal University, Jinan 250100, P. R. China.
J Mater Chem B. 2025 Apr 2;13(14):4447-4462. doi: 10.1039/d5tb00042d.
Bleeding and wound infection are two significant potential risks to life and health. While antibacterial hemostatic hydrogels can meet the requirements for hemostasis and the prevention of wound infections, the inclusion of antibacterial agents inevitably complicates the regulation of interactions between components, making it difficult to synergistically control the mechanical and antibacterial properties of the hydrogels, which limits the overall hydrogel performance. In this study, we propose the use of linear poly(-isopropylacrylamide) (L-P-(CHN)) with an antibacterial quaternary ammonium end-group for preparing hydrogels, rather than conventionally adding antibacterial agents. An injectable, highly antibacterial and wet-adhesive double-network hemostatic hydrogel was constructed using L-P-(CHN), gelatin (G), and hyaluronic acid (HA). The comprehensive properties of the hydrogel could be adjusted through changing the molecular weight of the L-P-(CHN) and the end-group effects. The G/HA/L-P-(CHN) hydrogel demonstrated a gel time of 12.2-14 s, an adhesion strength of 26.9 ± 2.0 kPa and a burst pressure of 264 ± 20 mmHg. It also exhibited strong antibacterial activity against (93 ± 2.7%) and (97 ± 3.2%), with satisfactory biocompatibility. Additionally, the hydrogel demonstrated good blood clotting ability and achieved rapid hemostasis (<15 s) . This work offers a simple and efficient strategy to fabricate high-performance smart antibacterial hemostatic hydrogels.
出血和伤口感染是对生命和健康的两大潜在重大风险。虽然抗菌止血水凝胶能够满足止血和预防伤口感染的要求,但添加抗菌剂不可避免地会使各成分之间相互作用的调控变得复杂,难以协同控制水凝胶的机械性能和抗菌性能,这限制了水凝胶的整体性能。在本研究中,我们提出使用带有抗菌季铵端基的线性聚(-异丙基丙烯酰胺)(L-P-(CHN))来制备水凝胶,而非传统地添加抗菌剂。使用L-P-(CHN)、明胶(G)和透明质酸(HA)构建了一种可注射、高抗菌性且具有湿粘性的双网络止血水凝胶。通过改变L-P-(CHN)的分子量和端基效应,可以调节水凝胶的综合性能。G/HA/L-P-(CHN)水凝胶的凝胶时间为12.2 - 14秒,粘附强度为26.9±2.0千帕,破裂压力为264±20毫米汞柱。它对金黄色葡萄球菌(93±2.7%)和大肠杆菌(97±3.2%)也表现出强大的抗菌活性,具有良好的生物相容性。此外,该水凝胶表现出良好的凝血能力,并实现了快速止血(<15秒)。这项工作为制备高性能智能抗菌止血水凝胶提供了一种简单有效的策略。