Li Xiancai, Li Yongqing, Xiong Binghong, Qiu Shengxiang
Key Laboratory of Plant Resources Conservation and Sustainable Utilization, South China Botanical Garden, Chinese Academy of Sciences, Guangzhou 510650, China.
Key Laboratory of South China Agricultural Plant Molecular Analysis and Genetic Improvement, South China Botanical Garden, Chinese Academy of Sciences, Guangzhou 510650, China.
Pharmaceutics. 2024 May 15;16(5):663. doi: 10.3390/pharmaceutics16050663.
Antimicrobial drugs have made outstanding contributions to the treatment of pathogenic infections. However, the emergence of drug resistance continues to be a major threat to human health in recent years, and therefore, the search for novel antimicrobial drugs is particularly urgent. With a deeper understanding of microbial habits and drug resistance mechanisms, various creative strategies for the development of novel antibiotics have been proposed. Stilbenoids, characterized by a C-C-C carbon skeleton, have recently been widely recognized for their flexible antimicrobial roles. Here, we comprehensively summarize the mode of action of stilbenoids from the viewpoint of their direct antimicrobial properties, antibiofilm and antivirulence activities and their role in reversing drug resistance. This review will provide an important reference for the future development and research into the mechanisms of stilbenoids as antimicrobial agents.
抗菌药物在致病性感染的治疗中做出了杰出贡献。然而,近年来耐药性的出现仍然是对人类健康的重大威胁,因此,寻找新型抗菌药物尤为迫切。随着对微生物习性和耐药机制的深入了解,人们提出了各种开发新型抗生素的创新策略。以C-C-C碳骨架为特征的芪类化合物,最近因其灵活的抗菌作用而被广泛认可。在此,我们从芪类化合物的直接抗菌特性、抗生物膜和抗毒力活性及其在逆转耐药性方面的作用等角度,全面总结了芪类化合物的作用模式。本综述将为芪类化合物作为抗菌剂的未来开发和作用机制研究提供重要参考。