Development and characterisation of interactive mixtures with a fine-particulate mucoadhesive carrier for nasal drug delivery

被引:15
作者
Fransen, Nelly [1 ]
Bjork, Erik [1 ]
Nystrom, Christer [1 ]
机构
[1] Uppsala Univ, Dept Pharm, SE-75123 Uppsala, Sweden
关键词
interactive mixtures; ordered mixtures; mucoadhesion; nasal drug delivery; sodium starch glycolate; Primojel((R));
D O I
10.1016/j.ejpb.2007.03.006
中图分类号
R9 [药学];
学科分类号
1007 [药学];
摘要
The aim of this study was to investigate whether mucoadhesive interactive mixtures can be created using carrier particles in a size range appropriate for nasal administration, i.e. 10-50 mu m. We also used theoretical models to investigate if homogeneity measurements can be used to evaluate the formation of interactive mixtures containing carrier particles in this size range. Sodium starch glycolate (SSG) was used as carrier material and sodium salicylate (SS) as the model fine-particulate drug. The size ranges of SSG particles and amounts of SS were varied to find the smallest carrier particle size and highest amount of drug that still resulted in an interactive mixture. Visual inspection of the mixtures by scanning electron microscopy showed that interactive mixtures could be formed with carrier particles as small as 30 mu m and containing up to 4% (w/w) of SS. Comparisons with theoretical models highlighted the difficulties of using homogeneity measurements to determine if interactive mixtures were formed. The measured coefficients of variation (CV) for the amount of drug in the samples were low and inferior mixtures were associated with only a slight increase. It was thus concluded that mucoadhesive interactive mixtures can be created in an appropriate size range for nasal administration, but that visual inspection of these mixtures is initially necessary to confirm the formation of an interactive mixture. (c) 2007 Elsevier B.V. All rights reserved.
引用
收藏
页码:370 / 376
页数:7
相关论文
共 37 条
[1]
STUDIES ON DIRECT COMPRESSION OF TABLETS .10. MEASUREMENT OF TABLET SURFACE-AREA BY PERMEAMETRY [J].
ALDERBORN, G ;
DUBERG, M ;
NYSTROM, C .
POWDER TECHNOLOGY, 1985, 41 (01) :49-56
[2]
DRY POWDER AEROSOLS .1. NEW POWDER INHALATION DEVICE [J].
BELL, JH ;
HARTLEY, PS ;
COX, JSG .
JOURNAL OF PHARMACEUTICAL SCIENCES, 1971, 60 (10) :1559-&
[3]
STARCH MICROSPHERES INDUCE PULSATILE DELIVERY OF DRUGS AND PEPTIDES ACROSS THE EPITHELIAL BARRIER BY REVERSIBLE SEPARATION OF THE TIGHT JUNCTIONS [J].
BJORK, E ;
ISAKSSON, U ;
EDMAN, P ;
ARTURSSON, P .
JOURNAL OF DRUG TARGETING, 1995, 2 (06) :501-507
[4]
In-vitro evaluation of bioadhesion in particulate systems and possible improvement using interactive mixtures [J].
Bredenberg, S ;
Nyström, C .
JOURNAL OF PHARMACY AND PHARMACOLOGY, 2003, 55 (02) :169-177
[5]
CHIEN YW, 1989, DRUGS PHARMACEUTICAL
[6]
*COUNC EUR, 2006, EUR PHARM 5 4
[7]
ORDERED MIXING IN DIRECT COMPRESSION OF TABLETS [J].
CROOKS, MJ ;
HO, R .
POWDER TECHNOLOGY, 1976, 14 (01) :161-167
[8]
Dry powder inhalation of antibiotics in cystic fibrosis therapy, part 1: development of a powder formulation with colistin sulfate for a special test inhaler with an air classifier as de-agglomeration principle [J].
de Boer, AH ;
Le Brun, PPH ;
van der Woude, HG ;
Hagedoorn, P ;
Heijerman, HGM ;
Frijlink, HW .
EUROPEAN JOURNAL OF PHARMACEUTICS AND BIOPHARMACEUTICS, 2002, 54 (01) :17-24
[9]
The effect of carrier surface and bulk properties on drug particle detachment from crystalline lactose carrier particles during inhalation, as function of carrier payload and mixing time [J].
Dickhoff, BHJ ;
de Boer, AH ;
Lambregts, D ;
Frijlink, HW .
EUROPEAN JOURNAL OF PHARMACEUTICS AND BIOPHARMACEUTICS, 2003, 56 (02) :291-302
[10]
Nasal delivery of insulin using novel chitosan based formulations: A comparative study in two animal models between simple chitosan formulations and chitosan nanoparticles [J].
Dyer, AM ;
Hinchcliffe, M ;
Watts, P ;
Castile, J ;
Jabbal-Gill, I ;
Nankervis, R ;
Smith, A ;
Illum, L .
PHARMACEUTICAL RESEARCH, 2002, 19 (07) :998-1008