Qu Huihui, Yao Quanfu, Chen Ting, Wu Haixia, Liu Ying, Wang Cong, Dong Alideertu
College of Chemistry and Chemical Engineering, Inner Mongolia University, Hohhot 010021, People's Republic of China; College of Life and Environmental Sciences, Minzu University of China, Beijing 100081, People's Republic of China; Engineering Research Center of Dairy Quality and Safety Control Technology, Ministry of Education, Inner Mongolia University, Hohhot 010021, People's Republic of China.
College of Life and Environmental Sciences, Minzu University of China, Beijing 100081, People's Republic of China; College of Chemistry and Environment, Hohhot Minzu College, Hohhot 010051, People's Republic of China.
Adv Colloid Interface Sci. 2024 Mar;325:103099. doi: 10.1016/j.cis.2024.103099. Epub 2024 Feb 1.
Microbial contamination poses a serious threat to human life and health. Through the intersection of material science and modern medicine, advanced bionic hydrogels have shown great potential for biomedical applications due to their unique bioactivity and ability to mimic the extracellular matrix environment. In particular, as a promising antimicrobial material, the synthesis and practical biomedical applications of peptide-based antimicrobial hydrogels have drawn increasing research interest. The synergistic effect of peptides and hydrogels facilitate the controlled release of antimicrobial agents and mitigation of their biotoxicity while achieving antimicrobial effects and protecting the active agents from degradation. This review reports on the progress and trends of researches in the last five years and provides a brief outlook, aiming to provide theoretical background on peptide-based antimicrobial hydrogels and make suggestions for future related work.
微生物污染对人类生命和健康构成严重威胁。通过材料科学与现代医学的交叉融合,先进的仿生水凝胶因其独特的生物活性和模拟细胞外基质环境的能力,在生物医学应用中展现出巨大潜力。特别是,作为一种有前景的抗菌材料,基于肽的抗菌水凝胶的合成及实际生物医学应用已引起越来越多的研究关注。肽与水凝胶的协同作用有助于抗菌剂的控释并减轻其生物毒性,同时实现抗菌效果并保护活性剂不被降解。本综述报道了过去五年的研究进展和趋势,并给出简要展望,旨在为基于肽的抗菌水凝胶提供理论背景,并为未来相关工作提出建议。