Liu Shunying, Feng Yanhai, Tan Yang, Chen Jinyi, Yang Tao, Wang Xiaoyu, Li Lingfei, Wang Fangjie, Liang Huaping, Zhong Julia-Li, Qi Chao, Lei Xia
Department of Dermatology, Daping Hospital, Army Medical University, Chongqing, China.
Chongqing Engineering Research Center of Organ Intelligent Bio-Manufacturing, Chongqing, China.
Wound Repair Regen. 2024 May-Jun;32(3):301-313. doi: 10.1111/wrr.13156. Epub 2024 Feb 3.
Bacterial wound infection has emerged as a pivotal threat to human health worldwide, and the situation has worsened owing to the gradual increase in antibiotic-resistant bacteria caused by the improper use of antibiotics. To reduce the use of antibiotics and avoid the increase in antibiotic-resistant bacteria, researchers are increasingly paying attention to photodynamic therapy, which uses light to produce reactive oxygen species to kill bacteria. Treating bacteria-infected wounds by photodynamic therapy requires fixing the photosensitizer (PS) at the wound site and maintaining a certain level of wound humidity. Hydrogels are materials with a high water content and are well suited for fixing PSs at wound sites for antibacterial photodynamic therapy. Therefore, hydrogels are often loaded with PSs for treating bacteria-infected wounds via antibacterial photodynamic therapy. In this review, we systematically summarised the antibacterial mechanisms and applications of PS-loaded hydrogels for treating bacteria-infected wounds via photodynamic therapy. In addition, the recent studies and the research status progresses of novel antibacterial hydrogels are discussed. Finally, the challenges and future prospects of PS-loaded hydrogels are reviewed.
细菌伤口感染已成为全球人类健康的一个关键威胁,由于抗生素的不当使用导致耐药菌逐渐增加,情况已恶化。为了减少抗生素的使用并避免耐药菌的增加,研究人员越来越关注光动力疗法,该疗法利用光产生活性氧来杀死细菌。通过光动力疗法治疗细菌感染伤口需要将光敏剂(PS)固定在伤口部位并保持一定水平的伤口湿度。水凝胶是一种高含水量的材料,非常适合将PS固定在伤口部位进行抗菌光动力疗法。因此,水凝胶通常负载PS以通过抗菌光动力疗法治疗细菌感染伤口。在本综述中,我们系统地总结了负载PS的水凝胶通过光动力疗法治疗细菌感染伤口的抗菌机制和应用。此外,还讨论了新型抗菌水凝胶的最新研究和研究现状进展。最后,综述了负载PS水凝胶的挑战和未来前景。