PLGA nanoparticles and nanosuspensions with amphotericin B: Potent in vitro and in vivo alternatives to Fungizone and AmBisome

被引:130
作者
Van de Ven, H. [1 ]
Paulussen, C. [2 ]
Feijens, P. B. [2 ]
Matheeussen, A. [2 ]
Rombaut, P. [3 ]
Kayaert, P. [3 ]
Van den Mooter, G. [3 ]
Weyenberg, W.
Cos, P. [2 ]
Maes, L. [2 ]
Ludwig, A.
机构
[1] Univ Antwerp, Fac Pharmaceut Biomed & Vet Sci, Dept Pharmaceut Sci, Lab Pharmaceut Technol & Biopharm, B-2610 Antwerp, Wilrijk, Belgium
[2] Univ Antwerp, LMPH, B-2610 Antwerp, Wilrijk, Belgium
[3] Univ Louvain, Lab Pharmacotechnol & Biopharm, B-3000 Louvain, Belgium
关键词
Nanomedicines; Amphotericin B; PLGA nanoparticles; Nanosuspension; Fungal infection; POLYMERIC COLLOIDS; CANDIDA-ALBICANS; FORMULATIONS; LEISHMANIA; TOXICITY; DERIVATIVES; STABILITY; LIPOSOMES; DIFFUSION; EFFICACY;
D O I
10.1016/j.jconrel.2012.05.037
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
This paper describes the development of poly(D,L-lactide-co-glycolide) (PLGA) nanoparticles (NPs) and nanosuspensions with the polyene antibiotic amphotericin B (AmB). The nanoformulations were prepared using nanoprecipitation and were characterised with respect to size, zeta potential, morphology, drug crystallinity and content. Standard in vitro sensitivity tests were performed on MRC-5 cells, red blood cells, Leishmania infantum promastigotes and intracellular amastigotes and the fungal species Candida albicans, Aspergillus fumigatus and Trichophyton rubrum. The in vivo efficacy was assessed and compared to that of Fungizone and AmBisome in the acute A. fumigatus mouse model at a dose of 2.5 and 5.0 mg/kg AmB equivalents. The developed AmB nanoformulations were equivalently or more effective against the different Leishmania stages and axenic fungi in comparison with the free drug. The in vitro biological activity, and especially hemolytic activity, clearly depended on the preparation parameters of the different nanoformulations. Further, we demonstrated that the superior in vitro antifungal activity could be extrapolated to the in vivo situation. At equivalent dose, the optimal AmB-loaded PLGA NP was about two times and the AmB nanosuspension about four times more efficacious in reducing the total burden than AmBisome. The developed AmB nanomedicines could represent potent and cost-effective alternatives to Fungizone and AmBisome. (c) 2012 Elsevier B.V. All rights reserved.
引用
收藏
页码:795 / 803
页数:9
相关论文
共 52 条
[1]   Freeze-drying of nanoparticles: Formulation, process and storage considerations [J].
Abdelwahed, Wassim ;
Degobert, Ghania ;
Stainmesse, Serge ;
Fessi, Hatem .
ADVANCED DRUG DELIVERY REVIEWS, 2006, 58 (15) :1688-1713
[2]   AmBisome: liposomal formulation, structure, mechanism of action and pre-clinical experience [J].
Adler-Moore, J ;
Proffitt, RT .
JOURNAL OF ANTIMICROBIAL CHEMOTHERAPY, 2002, 49 :21-30
[3]   Amphotericin B lipid preparations: what are the differences? [J].
Adler-Moore, J. P. ;
Proffitt, R. T. .
CLINICAL MICROBIOLOGY AND INFECTION, 2008, 14 :25-36
[4]   Lipid formulations of amphotericin B: where are we today? [J].
Antoniadou, A ;
Dupont, B .
JOURNAL DE MYCOLOGIE MEDICALE, 2005, 15 (04) :230-238
[5]   Amphotericin B and Its New Derivatives - Mode of Action [J].
Baginski, M. ;
Czub, J. .
CURRENT DRUG METABOLISM, 2009, 10 (05) :459-469
[6]   Plasma protein binding of amphotericin B and pharmacokinetics of bound versus unbound amphotericin B after administration of intravenous liposomal amphotericin B (AmBisome) and amphotericin B deoxycholate [J].
Bekersky, I ;
Fielding, RM ;
Dressler, DE ;
Lee, JW ;
Buell, DN ;
Walsh, TJ .
ANTIMICROBIAL AGENTS AND CHEMOTHERAPY, 2002, 46 (03) :834-840
[7]   Development of a nanoprecipitation method intended for the entrapment of hydrophilic drugs into nanoparticles [J].
Bilati, U ;
Allémann, E ;
Doelker, E .
EUROPEAN JOURNAL OF PHARMACEUTICAL SCIENCES, 2005, 24 (01) :67-75
[8]   Carrier effects on biological activity of amphotericin B [J].
Brajtburg, J ;
Bolard, J .
CLINICAL MICROBIOLOGY REVIEWS, 1996, 9 (04) :512-+
[9]   Editorial [J].
Cohen, Bronwen .
EUROPEAN EARLY CHILDHOOD EDUCATION RESEARCH JOURNAL, 2010, 18 (01) :1-3
[10]   Peritoneal retention of liposomes: Effects of lipid composition, PEG coating and liposome charge [J].
Dadashzadeh, S. ;
Mirahmadi, N. ;
Babaei, M. H. ;
Vali, A. M. .
JOURNAL OF CONTROLLED RELEASE, 2010, 148 (02) :177-186