4.8 Article

Design and Use of a Thermogelling Methylcellulose Nanoemulsion to Formulate Nanocrystalline Oral Dosage Forms

期刊

ADVANCED MATERIALS
卷 33, 期 29, 页码 -

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/adma.202008618

关键词

hydrogel particles; hydrophobic drugs; nanocrystals; oral dosage forms; thermoresponsive nanoemulsions

资金

  1. NSF [CMMI-1824297]
  2. Singapore National Research Foundation, Prime Minister's Office, Singapore under its Campus for Research Excellence and Technological Enterprise Program (CREATE)
  3. Think Global Education Trust (Taiwan)

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This study successfully developed a new thermogelling nanoemulsion and a thermal dripping method for efficient preparation of composite particles with a methylcellulose (MC) matrix embedded with precisely controlled API nanocrystals. By combining a fast-eroding MC matrix and fast-dissolving API nanocrystals, a fast and tunable release performance was achieved. The versatile thermal processing approach allows for the easy formulation of a wide variety of dosage forms, showing great promise for more efficient formulation of oral drug products with high quality and tunable fast release.
Oral drug products have become indispensable in modern medicine because of their exceptional patient compliance. However, poor bioavailability of ubiquitous low-water-soluble active pharmaceutical ingredients (APIs) and lack of efficient oral drug formulations remain as significant challenges. Nanocrystalline formulations are an attractive route to increase API solubility, but typically require abrasive mechanical milling and several processing steps to create an oral dosage form. Using the dual amphiphilic and thermoresponsive properties of methylcellulose (MC), a new thermogelling nanoemulsion and a facile thermal dripping method are developed for efficient formulation of composite particles with the MC matrix embedded with precisely controlled API nanocrystals. Moreover, a fast and tunable release performance is achieved with the combination of a fast-eroding MC matrix and fast-dissolving API nanocrystals. Using the versatile thermal processing approach, the thermogelling nanoemulsion is easily formulated into a wide variety of dosage forms (nanoparticle suspension, drug tablet, and oral thin film) in a manner that avoids nanomilling. Overall, the proposed thermogelling nanoemulsion platform not only broadens the applications of thermoresponsive nanoemulsions but also shows great promise for more efficient formulation of oral drug products with high quality and tunable fast release.

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