| Literature DB >> 27378357 |
Michiaki Hiramatsu1, Yuki Ichikawa1, Shusuke Tomoshige1, Makoto Makishima2, Atsuya Muranaka3, Masanobu Uchiyama3,4, Takao Yamaguchi1, Yuichi Hashimoto1, Minoru Ishikawa5.
Abstract
Aqueous solubility is a key requirement for many functional molecules, e. g., drug candidates. Decrease of the partition coefficient (log P) by chemical modification, i.e., introduction of hydrophilic group(s) into molecules, is a classical strategy for improving aqueous solubility. We have been investigating alternative strategies for improving the aqueous solubility of pharmaceutical compounds by disrupting intermolecular interactions. Here, we show that introducing a bend into the molecular structure of retinoic acid receptor (RAR) agonists by changing the substitution pattern from para to meta or ortho dramatically enhances aqueous solubility by up to 890-fold. We found that meta analogs exhibit similar hydrophobicity to the parent para compound, and have lower melting points, supporting the idea that the increase of aqueous solubility was due to decreased intermolecular interactions in the solid state as a result of the structural changes.Entities:
Keywords: aqueous solubility; drug design; intermolecular interaction; medicinal chemistry; melting point
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Year: 2016 PMID: 27378357 DOI: 10.1002/asia.201600744
Source DB: PubMed Journal: Chem Asian J ISSN: 1861-471X