Rational Coformer Selection in the Development of 6-Propyl-2-thiouracil Pharmaceutical Cocrystals
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Acebedo Martínez, Francisco Javier; Verdugo Escamilla, Cristóbal; Domínguez Martín, Alicia; Gómez Morales, Jaime; Choquesillo Lazarte, DuaneEditorial
MDPI
Materia
Propylthiouracil Polyphenols Cocrystals Mechanochemistry Crystal engineering
Date
2023-02-28Referencia bibliográfica
Acebedo-Martínez, F.J.; Alarcón-Payer, C.; Verdugo- Escamilla, C.; Martín, J.; Frontera, A.; Domínguez-Martín, A.; Gómez- Morales, J.; Choquesillo-Lazarte, D. Rational Coformer Selection in the Development of 6-Propyl-2-thiouracil Pharmaceutical Cocrystals. Pharmaceuticals 2023, 16, 370. [https://doi.org/10.3390/ph16030370]
Sponsorship
FEDER-Universidad de Granada, Spain B-FQM-478-UGR20; Spanish Government PID2020-115637GB-I00Abstract
Pharmaceutical multicomponent solids have proved to efficiently modulate the physico-
chemical properties of active pharmaceutical ingredients. In this context, polyphenols are interesting
coformers for designing pharmaceutical cocrystals due to their wide safety profile and interesting
antioxidant properties. The novel 6-propyl-2-thiouracil multicomponent solids have been obtained
by mechanochemical synthesis and fully characterized by powder and single-crystal X-ray diffraction
methods. The analysis of supramolecular synthons has been further performed with computational
methods, with both results revealing a robust supramolecular organization influenced by the different
positions of the hydroxyl groups within the polyphenolic coformers. All novel 6-propyl-2-thiouracil
cocrystals show an enhanced solubility profile, but unfortunately, their thermodynamic stability in
aqueous media is limited to 24 h.