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铁载体促进体外物种间和种内抗生素的协同交叉保护。

Siderophores promote cooperative interspecies and intraspecies cross-protection against antibiotics in vitro.

机构信息

Department of Pathology and Laboratory Medicine, Cedars-Sinai Medical Center, Los Angeles, CA, USA.

Center for Innovative Antimicrobial Therapy, Division of Infectious Diseases, Department of Medicine, University of Pittsburgh, Pittsburgh, PA, USA.

出版信息

Nat Microbiol. 2024 Mar;9(3):631-646. doi: 10.1038/s41564-024-01601-4. Epub 2024 Feb 26.

Abstract

The antibiotic cefiderocol hijacks iron transporters to facilitate its uptake and resists β-lactamase degradation. While effective, resistance has been detected clinically with unknown mechanisms. Here, using experimental evolution, we identified cefiderocol resistance mutations in Pseudomonas aeruginosa. Resistance was multifactorial in host-mimicking growth media, led to multidrug resistance and paid fitness costs in cefiderocol-free environments. However, kin selection drove some resistant populations to cross-protect susceptible individuals from killing by increasing pyoverdine secretion via a two-component sensor mutation. While pyochelin sensitized P. aeruginosa to cefiderocol killing, pyoverdine and the enterobacteria siderophore enterobactin displaced iron from cefiderocol, preventing uptake by susceptible cells. Among 113 P. aeruginosa intensive care unit clinical isolates, pyoverdine production directly correlated with cefiderocol tolerance, and high pyoverdine producing isolates cross-protected susceptible P. aeruginosa and other Gram-negative bacteria. These in vitro data show that antibiotic cross-protection can occur via degradation-independent mechanisms and siderophores can serve unexpected protective cooperative roles in polymicrobial communities.

摘要

抗生素头孢他啶可劫持铁转运蛋白,促进其摄取并抵抗β-内酰胺酶的降解。虽然有效,但临床上已经检测到耐药性,其机制尚不清楚。在这里,我们通过实验进化,在铜绿假单胞菌中鉴定出头孢他啶耐药突变。在宿主模拟生长介质中,耐药性是多因素的,导致对多种药物的耐药性,并在无头孢他啶的环境中付出适应性代价。然而,亲缘选择促使一些耐药群体通过双组分传感器突变增加吡咯并啉的分泌,从而对易感个体进行交叉保护,免受杀伤。虽然焦孔宁使铜绿假单胞菌对头孢他啶的杀伤敏感,但吡咯并啉和肠杆菌属的铁载体依替巴汀从头孢他啶中夺取铁,阻止易感细胞摄取。在 113 株铜绿假单胞菌重症监护病房临床分离株中,吡咯并啉的产生与头孢他啶的耐受性直接相关,高产量吡咯并啉的分离株对易感铜绿假单胞菌和其他革兰氏阴性菌具有交叉保护作用。这些体外数据表明,抗生素的交叉保护可以通过非降解依赖的机制发生,并且铁载体可以在多微生物群落中发挥意想不到的保护合作作用。

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