Time and Temperature Dependence of Drug Crystallization─The Role of Molecular Mobility

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Abstract

Using the time-temperature-transformation diagrams, we demonstrated a correlation between molecular mobility and crystallization in amorphous solid dispersions of nifedipine (NIF) with each polyvinylpyrrolidone vinyl acetate (PVPVA64) and polyvinyl caprolactam polyvinyl acetate-polyethylene glycol graft copolymer (Soluplus). The behavior was compared with the NIF dispersions prepared with each polyvinylpyrrolidone (PVP) and hydroxypropyl methylcellulose acetate succinate (HPMCAS) [Lalge et al., Mol. Pharmaceutics 2023, 20(3), 1806-1817]. Each system was characterized by a unique temperature at which the crystallization onset time was the shortest. Below this temperature, a coupling was observed between the α-relaxation time determined by dielectric spectroscopy and crystallization onset time. Above this temperature, the activation barrier for crystallization had a more significant role than molecular mobility. In the solid state, PVP and PVPVA64 dispersion exhibited higher resistance to crystallization than HPMCAS and Soluplus. The role of polymers in inhibiting crystal growth in nucleated systems was discerned by monitoring crystallization following wetting of the amorphous dispersion with the dissolution medium. PVPVA64 and Soluplus dispersions exhibited higher resistance to crystal growth than PVP and HPMCAS.

Original languageEnglish (US)
Pages (from-to)5880-5891
Number of pages12
JournalMolecular pharmaceutics
Volume21
Issue number11
DOIs
StatePublished - Nov 4 2024

Bibliographical note

Publisher Copyright:
© 2024 American Chemical Society.

Keywords

  • Soluplus
  • activation energy
  • amorphous solid dispersion
  • crystallization
  • drug-polymer interactions
  • hydroxypropyl methylcellulose acetate succinate (HPMCAS)
  • molecular mobility
  • nifedipine
  • nucleation
  • polyvinylpyrrolidone vinyl acetate (PVPVA64)
  • time−temperature−transformation

MRSEC Support

  • MRFN

PubMed: MeSH publication types

  • Journal Article

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  • MRSEC Program (Period of DMR-2011401)

    Lodge, T. (PI)

    9/1/208/31/26

    Project: Research project

  • MRFN

    Lodge, T. P. (PI)

    8/1/988/31/26

    Project: Research project

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