Relationships between solid dispersion preparation process, particle size and drug release - An NMR and NMR microimaging study

被引:31
作者
Dahlberg, Carina [1 ,2 ]
Millqvist-Fureby, Anna [2 ]
Schuleit, Michael [3 ]
Furo, Istvan [1 ]
机构
[1] Royal Inst Technol, Dept Chem, SE-10044 Stockholm, Sweden
[2] Inst Surface Chem, YKI, S-11486 Stockholm, Sweden
[3] Novartis Pharma AG, Pharmaceut & Analyt Dev, Basel, Switzerland
基金
瑞典研究理事会;
关键词
Gel layer formation; Rotoevaporation; Spray drying; Hydroxypropyl methylcellulose; HPMC; Diffusion; WATER-SOLUBLE DRUGS; HYDROPHILIC MATRIX; DOSAGE FORMS; HYDROXYPROPYLMETHYLCELLULOSE HPMC; TABLETS; MICROSCOPY; MECHANISM; PERFORMANCE; FORMULATION; RESOLUTION;
D O I
10.1016/j.ejpb.2010.06.006
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Solid dispersion tablets prepared by either spray drying or rotoevaporation and exhibiting different grain and pore sizes were investigated under the process of hydration-swelling-gelation. H-2 and H-1 NMR microimaging experiments were used to selectively follow water penetration and polymer mobilization kinetics, respectively, while the drug release kinetics was followed by H-1 NMR spectroscopy. The obtained data, in combination with morphological information by scanning electron microscopy (SEM), reveal a complex process that ultimately leads to release of the drug into the aqueous phase. We find that the rate of water ingress has no direct influence on release kinetics, which also renders air in the tablets a secondary factor. On the other hand, drug release is directly correlated with the polymer mobilization kinetics. Water diffusion into the originally dry polymer grains determines the rate of grain swelling and the hydration within the grains varies strongly with grain size. We propose that this sets the stage for creating homogeneous gels for small grain sizes and heterogeneous gels for large grain sizes. Fast diffusion through water-rich sections of the inhomogeneous gels that exhibit a large mesh size is the factor which yields a faster drug release from tablets prepared by rotoevaporation. (C) 2010 Published by Elsevier B.V.
引用
收藏
页码:311 / 319
页数:9
相关论文
共 38 条
  • [1] New release cell for NMR microimaging of tablets Swelling and erosion of poly(ethylene oxide)
    Abrahmsen-Alami, Susanna
    Korner, Anna
    Nilsson, Ingvar
    Larsson, Anette
    [J]. INTERNATIONAL JOURNAL OF PHARMACEUTICS, 2007, 342 (1-2) : 105 - 114
  • [2] ALDERMAN D A, 1984, International Journal of Pharmaceutical Technology and Product Manufacture, V5, P1
  • [3] Solute diffusion within hydrogels. Mechanisms and models
    Amsden, B
    [J]. MACROMOLECULES, 1998, 31 (23) : 8382 - 8395
  • [4] NMR MICROSCOPY OF HYDRATING HYDROPHILIC MATRIX PHARMACEUTICAL TABLETS
    BOWTELL, R
    SHARP, JC
    PETERS, A
    MANSFIELD, P
    RAJABISIAHBOOMI, AR
    DAVIES, MC
    MELIA, CD
    [J]. MAGNETIC RESONANCE IMAGING, 1994, 12 (02) : 361 - 364
  • [5] Callaghan P. T., 1991, Principles of Nuclear Magnetic Resonance Microscopy
  • [6] Influence of the viscosity grade and the particle size of HPMC on metronidazole release from matrix tablets
    CamposAldrete, ME
    VillafuerteRobles, L
    [J]. EUROPEAN JOURNAL OF PHARMACEUTICS AND BIOPHARMACEUTICS, 1997, 43 (02) : 173 - 178
  • [7] Effects of polymer particle size, compaction pressure and hydrophilic polymers on drug release from matrices containing ethylcellulose
    Dabbagh, MA
    Ford, JL
    Rubinstein, MH
    Hogan, JE
    [J]. INTERNATIONAL JOURNAL OF PHARMACEUTICS, 1996, 140 (01) : 85 - 95
  • [8] Surface composition and contact angle relationships for differently prepared solid dispersions
    Dahlberg, Carina
    Millqvist-Fureby, Anna
    Schuleit, Michael
    [J]. EUROPEAN JOURNAL OF PHARMACEUTICS AND BIOPHARMACEUTICS, 2008, 70 (02) : 478 - 485
  • [9] Polymer mobilization and drug release during tablet swelling.: A 1H NMR and NMR microimaging study
    Dahlberg, Carina
    Fureby, Anna
    Schuleit, Michael
    Dvinskikh, Sergey V.
    Furo, Istvan
    [J]. JOURNAL OF CONTROLLED RELEASE, 2007, 122 (02) : 199 - 205
  • [10] *DOW CHEM CO, 2002, TECHN HDB DOW CHEM C