Antibiotic-loaded nanoparticles targeted to the site of infection enhance antibacterial efficacy

载有抗生素的纳米粒子针对感染部位可增强抗菌功效

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作者:Sazid Hussain, Jinmyoung Joo, Jinyoung Kang, Byungji Kim, Gary B Braun, Zhi-Gang She, Dokyoung Kim, Aman P Mann, Tarmo Mölder, Tambet Teesalu, Santina Carnazza, Salvatore Guglielmino, Michael J Sailor, Erkki Ruoslahti

Abstract

Bacterial resistance to antibiotics has made it necessary to resort to antibiotics that have considerable toxicities. Here, we show that the cyclic 9-amino acid peptide CARGGLKSC (CARG), identified via phage display on Staphylococcus aureus (S. aureus) bacteria and through in vivo screening in mice with S. aureus-induced lung infections, increases the antibacterial activity of CARG-conjugated vancomycin-loaded nanoparticles in S. aureus-infected tissues and reduces the needed overall systemic dose, minimizing side effects. CARG binds specifically to S. aureus bacteria but not Pseudomonas bacteria in vitro, selectively accumulates in S. aureus-infected lungs and skin of mice but not in non-infected tissue and Pseudomonas-infected tissue, and significantly enhances the accumulation of intravenously injected vancomycin-loaded porous silicon nanoparticles bearing the peptide in S. aureus-infected mouse lung tissue. The targeted nanoparticles more effectively suppress staphylococcal infections in vivo relative to equivalent doses of untargeted vancomycin nanoparticles or of free vancomycin. The therapeutic delivery of antibiotic-carrying nanoparticles bearing peptides targeting infected tissue may help combat difficult-to-treat infections.

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