Dissolution Mechanisms of Amorphous Solid Dispersions: A Close Look at the Dissolution Interface

被引:17
作者
Deac, Alexandru [1 ]
Qi, Qingqing [1 ]
Indulkar, Anura S. [2 ]
Gao, Yi [2 ]
Zhang, Geoff G. Z. [2 ]
Taylor, Lynne S. [1 ]
机构
[1] Purdue Univ, Coll Pharm, Dept Ind & Phys Pharm, Indiana, PA 47907 USA
[2] AbbVie Inc, Dev Sci Res & Dev, N Chicago, IL 60064 USA
关键词
amorphous solid dispersion; dissolution mechanism; limit of congruency; confocal microscopy; fluorescent molecular probes; phenolphthalein; copovidone; PVPVA; water-induced phase separation; SUPERSATURATED AQUEOUS-SOLUTIONS; LIQUID PHASE-SEPARATION; NANODROPLET FORMATION; MOLECULAR MOBILITY; PHYSICAL STABILITY; DRUG; CRYSTALLIZATION; ENHANCEMENT; SOLUBILITY; NIFEDIPINE;
D O I
10.1021/acs.molpharmaceut.3c00020
中图分类号
R-3 [医学研究方法]; R3 [基础医学];
学科分类号
1001 ;
摘要
Despite the recent success of amorphous solid dispersions (ASDs) at enabling the delivery of poorly soluble small molecule drugs, ASDbased dosage forms are limited by low drug loading. This is partially due to a sharp decline in drug release from the ASD at drug loadings surpassing the 'limit of congruency' (LoC). In some cases, the LoC is as low as 5% drug loading, significantly increasing the risk of pill burden. Despite efforts to understand the mechanism responsible for the LoC, a clear picture of the molecular processes occurring at the ASD/solution interface remains elusive. In this study, the ASD/ solution interface was studied for two model compounds formulated as ASDs with copovidone. The evolution of a gel layer and its phase behavior was captured in situ with fluorescence confocal microscopy, where fluorescent probes were added to label the hydrophobic and hydrophilic phases. Phase separation was detected in the gel layer for most of the ASDs. The morphology of the hydrophobic phase was found to correlate with the release behavior, where a discrete phase resulted in good release and a continuous phase formed a barrier leading to poor release. The continuous phase formed at a lower drug loading for the system with stronger drug-polymer interactions. This was due to incorporation of the polymer into the hydrophobic phase. The study highlights the complex molecular and phase behavior at the ASD/solution interface of copovidone-based ASDs and provides a thermodynamic argument for qualitatively predicting the release behavior based on drug- polymer interactions.
引用
收藏
页码:2217 / 2234
页数:18
相关论文
共 50 条
  • [1] Molecular mobility-based estimation of the crystallization rates of amorphous nifedipine and phenobarbital in poly(vinylpyrrolidone) solid dispersions
    Aso, Y
    Yoshioka, S
    Kojima, S
    [J]. JOURNAL OF PHARMACEUTICAL SCIENCES, 2004, 93 (02) : 384 - 391
  • [2] EFFECT OF MOLECULAR WEIGHT AND ORIENTATION ON SORPTION OF PENTANE BY GLASSY POLYSTYRENE
    BAIRD, BR
    HOPFENBE.HB
    STANNETT, VT
    [J]. POLYMER ENGINEERING AND SCIENCE, 1971, 11 (04) : 274 - &
  • [3] Structure and linear viscoelasticity of flexible polymer solutions: comparison of polyelectrolyte and neutral polymer solutions
    Colby, Ralph H.
    [J]. RHEOLOGICA ACTA, 2010, 49 (05) : 425 - 442
  • [4] A THEORETICAL INVESTIGATION OF THE INFLUENCE OF MOLECULAR RELAXATION AND INTERNAL STRESS ON DIFFUSION IN POLYMERS
    CRANK, J
    [J]. JOURNAL OF POLYMER SCIENCE, 1953, 11 (02): : 151 - 168
  • [5] Dissolution Mechanisms of Amorphous Solid Dispersions: Role of Drug Load and Molecular Interactions
    Deac, Alexandru
    Qi, Qingqing
    Indulkar, Anura S.
    Purohit, Hitesh S.
    Gao, Yi
    Zhang, Geoff G. Z.
    Taylor, Lynne S.
    [J]. MOLECULAR PHARMACEUTICS, 2023, 20 (01) : 722 - 737
  • [6] Downstream processing of polymer-based amorphous solid dispersions to generate tablet formulations
    Demuth, B.
    Nagy, Z. K.
    Balogh, A.
    Vigh, T.
    Marosi, G.
    Verreck, G.
    Van Assche, I.
    Brewster, M. E.
    [J]. INTERNATIONAL JOURNAL OF PHARMACEUTICS, 2015, 486 (1-2) : 268 - 286
  • [7] UNUSUAL RETARDATION AND ENHANCEMENT IN POLYMER DISSOLUTION - ROLE OF DISENGAGEMENT DYNAMICS
    DEVOTTA, I
    BADIGER, MV
    RAJAMOHANAN, PR
    GANAPATHY, S
    MASHELKAR, RA
    [J]. CHEMICAL ENGINEERING SCIENCE, 1995, 50 (16) : 2557 - 2569
  • [8] Use of highly compressible Ceolus™ microcrystalline cellulose for improved dosage form properties containing a hydrophilic solid dispersion
    DiNunzio, James C.
    Schilling, Sandra U.
    Coney, Andrew W.
    Hughey, Justin R.
    Kaneko, Nobuya
    McGinity, James W.
    [J]. DRUG DEVELOPMENT AND INDUSTRIAL PHARMACY, 2012, 38 (02) : 180 - 189
  • [9] Impact of phase separation morphology on release mechanism of amorphous solid dispersions
    Han, Yi Rang
    Ma, Yingshan
    Lee, Ping I.
    [J]. EUROPEAN JOURNAL OF PHARMACEUTICAL SCIENCES, 2019, 136
  • [10] Combining drug salt formation with amorphous solid dispersions-a double edged sword
    Hiew, Tze Ning
    Taylor, Lynne S.
    [J]. JOURNAL OF CONTROLLED RELEASE, 2022, 352 : 47 - 60