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Phage-liposome nanoconjugates for orthopedic biofilm eradication. | LitMetric

AI Article Synopsis

  • Multidrug-resistant (MDR) bacteria pose a major public health risk, particularly due to the challenges in treating infections caused by their biofilms, which have thick protective layers that hinder antibiotic penetration.
  • This study introduces a new treatment approach using a bioactive nanoconjugate that combines drug-loaded liposomes with bacteriophages (like phage Sb-1) to target and break down the biofilm structure, allowing antibiotics to work more effectively.
  • Testing in a rat model of prosthetic joint infection showed that these liposome-phage nanoconjugates significantly reduced bacterial presence and aided in recovery from infection, suggesting a promising avenue for treating deep tissue infections and orthopedic issues.

Article Abstract

Infection by multidrug-resistant (MDR) bacteria has become one of the biggest threats to public health worldwide. One reason for the difficulty in treatment is the lack of proper delivery strategies into MDR bacterial biofilms, where the thick extracellular polymeric substance (EPS) layer impedes the penetration of antibiotics and nanoparticles. Here, we propose a novel bioactive nanoconjugate of drug-loaded liposomes and bacteriophages for targeted eradication of the MDR biofilms in orthopedic infections. Phage Sb-1, which has the ability to degrade EPS, was conjugated with antibiotic-loaded liposomes. Upon encountering the biofilm, phage Sb-1 degrades the EPS structure, thereby increasing the sensitivity of bacteria to antibiotics and allowing the antibiotics to penetrate deeply into the biofilm. As a result, effective removal of MDR bacterial biofilm was achieved with low dose of antibiotics, which was proved in this study by both in vitro and in vivo investigations. Notably, in the rat prosthetic joint infection (PJI) model, we found that the liposome-phage nanoconjugates could effectively decrease the bacterial load in the infected area and significantly promote osteomyelitis recovery. It is therefore believed that the conjugation of bacteriophage and liposomes could open new possibilities for the treatment of orthopedic infections, possibly other infections in the deep tissues.

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Source
http://dx.doi.org/10.1016/j.jconrel.2024.09.049DOI Listing

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