4.7 Article

Rifampicin-Liposomes for Mycobacterium abscessus Infection Treatment: Intracellular Uptake and Antibacterial Activity Evaluation

期刊

PHARMACEUTICS
卷 13, 期 7, 页码 -

出版社

MDPI
DOI: 10.3390/pharmaceutics13071070

关键词

liposomes; rifampicin; Mycobacterium abscessus; antibiotic resistance

资金

  1. Phospholipid Research Center [FBO-2017-051/1-1]
  2. Italian Cystic Fibrosis Foundation [19/2019]

向作者/读者索取更多资源

Treatment of pulmonary infections caused by Mycobacterium abscessus is challenging due to the bacterium's natural resistance to antibiotics. Formulating rifampicin-loaded liposomes for lung delivery can help increase the local concentration of the drug and enhance its biological activity against intracellular mycobacteria. Overall, liposome formulation of rifampicin represents a promising strategy for combating Mycobacterium abscessus infections.
Treatment of pulmonary infections caused by Mycobacterium abscessus are extremely difficult to treat, as this species is naturally resistant to many common antibiotics. Liposomes are vesicular nanocarriers suitable for hydrophilic and lipophilic drug loading, able to deliver drugs to the target site, and successfully used in different pharmaceutical applications. Moreover, liposomes are biocompatible, biodegradable and nontoxic vesicles and nebulized liposomes are efficient in targeting antibacterial agents to macrophages. The present aim was to formulate rifampicin-loaded liposomes (RIF-Lipo) for lung delivery, in order to increase the local concentration of the antibiotic. Unilamellar liposomal vesicles composed of anionic DPPG mixed with HSPC for rifampicin delivery were designed, prepared, and characterized. Samples were prepared by using the thin-film hydration method. RIF-Lipo and unloaded liposomes were characterized in terms of size, zeta-potential, bilayer features, stability and in different biological media. Rifampicin's entrapment efficiency and release were also evaluated. Finally, biological activity of RIF-loaded liposomes in Mycobacterium abscessus-infected macrophages was investigated. The results show that RIF-lipo induce a significantly better reduction of intracellular Mycobacterium abscessus viability than the treatment with free drug. Liposome formulation of rifampicin may represent a valuable strategy to enhance the biological activity of the drug against intracellular mycobacteria.

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