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Solubility of Hydrophobic Compounds in Aqueous Solution Using Combinations of Self-assembling Peptide and Amino Acid
Published on: September 20, 2017
Dissolution Enhancement by Binding Agents: A Potential Shortcut to Improving Bioavailability?
Maja Chronowska1,2, Jennifer Dressman3,4
1Fraunhofer Institute for Translational Medicine and Pharmacology ITMP, Sandhöfer Allee 1, Frankfurt am Main, 60528, Germany. maja.chronowska@gmx.de.
Abstract:
The poor water solubility of many drugs and drug candidates is a limiting factor to their bioavailability after oral administration. Although dissolution enhancing approaches, e.g. amorphous solid dispersions, are often used to make enabling formulations, these are usually associated with high development and manufacturing costs. This study focuses on the potential of using pharmaceutical excipients (binders) in simple tablet formulations to improve drug release and thus bioavailability. Loperamide hydrochloride, fenofibrate, compound c0 (a drug candidate) and carvedilol were chosen for this study as poorly water-soluble model compounds. Their solubility in the absence and presence of three polymeric binders, polyvinylpyrrolidone (PVP) K90, hydroxypropyl methylcellulose (HPMC) E4M and E15, and methylcellulose (MC) was tested in FaSSIF-V1 buffer and biorelevant media. Additionally, after wet granulation using PVP K90 or HPMC E15 as binders and tablet compression, the dissolution of the model compounds was tested in FaSSIF-V1 buffer and biorelevant media. Although solubilities and dissolution profiles of the model compounds were mostly improved by the binders, correlation between solubility in buffers and dissolution from the tablets in biorelevant FaSSIF-V1 was poor, indicating that dissolution experiments may be a better screening tool than solubility experiments. An important conclusion of these studies is that it is possible to increase the rate, and in some cases, the extent of dissolution of four poorly soluble drugs using wet granulation with polymeric binders, followed by tablet compression - a simple and cost-effective approach to improving drug performance.
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