抗生素耐药性
抗生素
微生物群
计算生物学
抗菌剂
膜透性
抗药性
抗菌肽
医学
生物
生物信息学
药品
桥接(联网)
生物技术
重症监护医学
核酸
药物发现
抗生素治疗
细胞通透性
精密医学
细菌蛋白
药物开发
化学
转化研究
微生物学
人类健康
抗菌药物
作者
Haodi Ma,Liying Zhang,Lulu Wang,Zimeng Yang,Junfeng Liu,Haoyang Sun,Shuai Ge,Chunshan Quan
出处
期刊:Antibiotics
[Multidisciplinary Digital Publishing Institute]
日期:2026-03-29
卷期号:15 (4): 351-351
标识
DOI:10.3390/antibiotics15040351
摘要
Antibiotic resistance is a critical global health threat, already causing over 1.27 million deaths annually and projected to exceed 10 million by 2050. This crisis is compounded by stagnation in novel antibiotic discovery, highlighting the need for mechanism–based innovation. Here, we provide an integrative framework linking antibiotic mechanisms of action, bacterial resistance pathways, and emerging therapeutic strategies. Antibiotics are systematically categorized by their molecular targets, cell wall synthesis, membrane integrity, nucleic acid replication, protein synthesis, and metabolic pathways, while resistance mechanisms are outlined in parallel, including enzymatic degradation, target modification, efflux, and permeability barriers. We further highlight novel approaches such as structure–guided drug design, synergistic combinations, nanoparticle delivery, and artificial intelligence–driven discovery. Precision medicine and microbiome modulation are also emphasized as next–generation interventions. By bridging molecular mechanisms with translational strategies, this review outlines opportunities to guide antibiotic innovation and advance precision therapies against the escalating threat of antimicrobial resistance.
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