Tablet preformulations of indomethacin-loaded mesoporous silicon microparticles

Maria Tahvanainen, Tanja Rotko, Ermei Makila, Hélder A. Santos, Diogo Neves, Timo Laaksonen, Aki Kallonen, Keijo Hämäläinen, Marko Peura, Ritva Serimaa, Jarno Salonen, Jouni Hirvonen, Leena Peltonen

    Research output: Contribution to journalArticleScientificpeer-review

    28 Citations (Scopus)

    Abstract

    In this study, indomethacin-loaded thermally oxidized mesoporous silicon microparticles (TOPSi-IMC) were formulated into tablets with excipients in order to improve the dissolution and permeability properties of the poorly soluble drug. Formulations of TOPSi-IMC particles and excipients were prepared at different TOPSi-IMC particle ratios (25, 30 and 35%). The formulations were compressed by direct compression technique with a single punch tablet machine. For comparison, a formulation containing the bulk IMC (indomethacin) and the same excipients without thermally oxidized mesoporous silicon microparticles particles (TOPSi) was prepared and compressed into tablets. The TOPSi-IMC tablets were characterised according to weight, thickness, crushing strength, disintegration time and dissolution rate. The results of this study show that TOPSi-IMC particles can be compressed to a conventional tablet. The release rate of the drug and its permeation across intestinal cells model (Caco-2) from TOPSi-IMC tablets was improved compared to the bulk IMC tablets. The dissolution rate and permeability of IMC from the tablets decreased with increasing ratio of the TOPSi-IMC particles in the formulation. The phenomenon is, presumably, a result of the loss of unique pore structure of the particles due to deformation of the particles under the compression load.
    Original languageEnglish
    Pages (from-to)125-131
    Number of pages7
    JournalInternational Journal of Pharmaceutics
    Volume422
    Issue number1-2
    DOIs
    Publication statusPublished - 2012
    Publication typeA1 Journal article-refereed

    Keywords

    • Mesoporous silicon
    • Microparticles
    • Poorly soluble drug
    • Indomethacin
    • Tablet formulation
    • Dissolution rate
    • DRUG-DELIVERY SYSTEMS
    • AMORPHOUS INDOMETHACIN
    • SURFACE-CHEMISTRY
    • PORE-SIZE
    • RELEASE
    • CRYSTALLIZATION
    • FORMULATIONS
    • COMPRESSION
    • RELAXATION
    • TRANSITION
    • 317 Pharmacy
    • 114 Physical sciences

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