Bianco Gabriele, Boattini Matteo, Cricca Monica, Diella Lucia, Gatti Milo, Rossi Luca, Bartoletti Michele, Sambri Vittorio, Signoretto Caterina, Fonnesu Rossella, Comini Sara, Gaibani Paolo
Department of Experimental Medicine, University of Salento, 73100 Lecce, Italy.
Department of Public Health and Paediatrics, University of Torino, 10124 Turin, Italy.
Curr Issues Mol Biol. 2024 Dec 14;46(12):14132-14153. doi: 10.3390/cimb46120846.
In recent years, novel antimicrobials have been developed to counter the emergence of antimicrobial resistance and provide effective therapeutic options against multidrug-resistant (MDR) Gram-negative bacilli (GNB). Cefiderocol, a siderophore cephalosporin, represents a novel valuable antimicrobial drug for the treatment of infections caused by MDR-GNB. The mechanism of cefiderocol to penetrate through the outer membrane of bacterial cells, termed "", makes this antimicrobial drug unique and immune to the various resistance strategies adopted by GNB. Its broad spectrum of action, potent antibacterial activity, pharmacokinetics properties, safety, and tolerability make cefiderocol a key drug for the treatment of infections due to MDR strains. Although this novel antimicrobial molecule contributed to revolutionizing the therapeutic armamentarium against MDR-GNB, the recent emergence of cefiderocol-resistant strains has redefined its role in clinical practice and required new strategies to preserve its antibacterial activity. In this review, we provide an updated discussion regarding the mechanism of action, emerging mechanisms of resistance, pharmacokinetic/pharmacodynamic (PK/PD) properties, and efficacy data of cefiderocol against the major Gram-negative bacteria and future prospects.
近年来,为应对抗菌药物耐药性的出现,并为多重耐药(MDR)革兰氏阴性杆菌(GNB)提供有效的治疗选择,新型抗菌药物不断被研发出来。头孢地尔,一种铁载体头孢菌素,是一种用于治疗由MDR - GNB引起的感染的新型有价值的抗菌药物。头孢地尔穿透细菌细胞外膜的机制,被称为“”,使这种抗菌药物独具特色,且不受GNB所采用的各种耐药策略的影响。其广泛的抗菌谱、强大的抗菌活性、药代动力学特性、安全性和耐受性,使头孢地尔成为治疗MDR菌株所致感染的关键药物。尽管这种新型抗菌分子为彻底改变针对MDR - GNB的治疗手段做出了贡献,但最近出现的头孢地尔耐药菌株重新定义了其在临床实践中的作用,并需要新的策略来保持其抗菌活性。在这篇综述中,我们提供了关于头孢地尔的作用机制、新出现的耐药机制、药代动力学/药效学(PK/PD)特性、对主要革兰氏阴性菌的疗效数据以及未来前景的最新讨论。