4.6 Article

Amphotericin B-entrapping lipid nanoparticles and their in vitro and in vivo characteristics

期刊

EUROPEAN JOURNAL OF PHARMACEUTICAL SCIENCES
卷 37, 期 3-4, 页码 313-320

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ELSEVIER
DOI: 10.1016/j.ejps.2009.02.021

关键词

Amphotericin B; Lipid nanoparticle; Cytotoxicity; Hematotoxicity; Antifungal activity

资金

  1. ministry of knowledge economy of Korea [10023034]
  2. Korea Institute of Industrial Technology(KITECH) [10023034] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

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Lipid nanoparticles (LNPs) as nano-scale drug carriers that can entrap poorly water-soluble drugs such as amphotericin B (AmB) in aqueous solution with high drug entrapment efficiency were developed and their in vitro and in vivo characteristics were investigated. The AmB-entrapping plain, anionic and PEG (polyethylene glycol)-LNPs were prepared by using spontaneous emulsification and solvent evaporation (SESE) method. Mean particle size of the AmB-entrapping LNPs ranged from 72.9 to 159.1 nm according to a variation of their lipid composition. The surface of AmB-entrapping PEG (0.2)-LNPs having 84.4 +/- 6 nm of particle size was negatively charged showing -50.4 +/- 5 mV of zeta-potential Value. Entrapment efficiency of AmB; in the PEG-LNPs reached Up to 76.5 +/- 5%. Cytotoxicity of the AmB-entrapping LNPs against human kidney cells, 293 cells, was lower than those of the commercialized AmB-formulations such as Fungizone (R) and AmBisome (R). Hematotoxicity of the AmB-entrapping LNPs against red blood cells was much lower than that of Fungizone (R) but comparable to AmBisome (R). Antifungal activity in vitro of AmB-entrapping LNPs against Candida albicans and Aspergillus fumigatus was better than the commercialized AmB formulations showing their low minimum inhibitory concentration (MIC) for 90% of growth inhibition of fungi. The AmB-entrapping LNPs increased circulation half life of AmB in blood stream and it was comparable to AmBisome (R). Antifungal activity in vivo of the AmB-entrapping PEG-LNPs against Aspergillus fumigatus (ATCC 16424)-infected mice was Superior to that of AmBisome (R). The drug-entrapping LNPs, especially PEG-LNPs, can be applicable to entrapment of poorly water-soluble drugs and enhancement of therapeutic efficacy by modulating pharmacokinetic behaviors and/or drug-related toxicities. Crown Copyright (C) 2009 Published by Elsevier B.V. All rights reserved.

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