New Lidocaine-Based Pharmaceutical Cocrystals: Preparation, Characterization, and Influence of the Racemic vs. Enantiopure Coformer on the Physico-Chemical Properties
MA, Panpan
Unité de Technologies Chimiques et Biologiques pour la Santé [UTCBS - UM 4 (UMR 8258 / U1267)]
Unité de Technologies Chimiques et Biologiques pour la Santé [UTCBS - UM 4 (UMR 8258 / U1267)]
ROBERTI, Enrica Angela
Unité de Technologies Chimiques et Biologiques pour la Santé [UTCBS - UM 4 (UMR 8258 / U1267)]
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Unité de Technologies Chimiques et Biologiques pour la Santé [UTCBS - UM 4 (UMR 8258 / U1267)]
MA, Panpan
Unité de Technologies Chimiques et Biologiques pour la Santé [UTCBS - UM 4 (UMR 8258 / U1267)]
Unité de Technologies Chimiques et Biologiques pour la Santé [UTCBS - UM 4 (UMR 8258 / U1267)]
ROBERTI, Enrica Angela
Unité de Technologies Chimiques et Biologiques pour la Santé [UTCBS - UM 4 (UMR 8258 / U1267)]
Unité de Technologies Chimiques et Biologiques pour la Santé [UTCBS - UM 4 (UMR 8258 / U1267)]
SCORNET, Noémie
Unité de Technologies Chimiques et Biologiques pour la Santé [UTCBS - UM 4 (UMR 8258 / U1267)]
Unité de Technologies Chimiques et Biologiques pour la Santé [UTCBS - UM 4 (UMR 8258 / U1267)]
SANTOS SILVA, Axel
Unité de Technologies Chimiques et Biologiques pour la Santé [UTCBS - UM 4 (UMR 8258 / U1267)]
Unité de Technologies Chimiques et Biologiques pour la Santé [UTCBS - UM 4 (UMR 8258 / U1267)]
CASTILLO HENRÍQUEZ, Luis
Unité de Technologies Chimiques et Biologiques pour la Santé [UTCBS - UM 4 (UMR 8258 / U1267)]
Unité de Technologies Chimiques et Biologiques pour la Santé [UTCBS - UM 4 (UMR 8258 / U1267)]
BARALDI, Cecilia
Università degli Studi di Modena e Reggio Emilia = University of Modena and Reggio Emilia [UNIMORE]
Università degli Studi di Modena e Reggio Emilia = University of Modena and Reggio Emilia [UNIMORE]
GAMBERINI, Maria Cristina
Università degli Studi di Modena e Reggio Emilia = University of Modena and Reggio Emilia [UNIMORE]
Università degli Studi di Modena e Reggio Emilia = University of Modena and Reggio Emilia [UNIMORE]
RICHARD, Cyrille
Unité de Technologies Chimiques et Biologiques pour la Santé [UTCBS - UM 4 (UMR 8258 / U1267)]
Unité de Technologies Chimiques et Biologiques pour la Santé [UTCBS - UM 4 (UMR 8258 / U1267)]
ESPEAU, Philippe
Unité de Technologies Chimiques et Biologiques pour la Santé [UTCBS - UM 4 (UMR 8258 / U1267)]
Unité de Technologies Chimiques et Biologiques pour la Santé [UTCBS - UM 4 (UMR 8258 / U1267)]
CORVIS, Yohann
Unité de Technologies Chimiques et Biologiques pour la Santé [UTCBS - UM 4 (UMR 8258 / U1267)]
< Reduce
Unité de Technologies Chimiques et Biologiques pour la Santé [UTCBS - UM 4 (UMR 8258 / U1267)]
Language
en
Article de revue
This item was published in
Pharmaceutics. 2023, vol. 15, n° 4, p. 1102
MDPI
English Abstract
This study describes the preparation, characterization, and influence of the enantiopure vs. racemic coformer on the physico-chemical properties of a pharmaceutical cocrystal. For that purpose, two new 1:1 cocrystals, ...Read more >
This study describes the preparation, characterization, and influence of the enantiopure vs. racemic coformer on the physico-chemical properties of a pharmaceutical cocrystal. For that purpose, two new 1:1 cocrystals, namely lidocaine:dl-menthol and lidocaine:d-menthol, were prepared. The menthol racemate-based cocrystal was evaluated by means of X-ray diffraction, infrared spectroscopy, Raman, thermal analysis, and solubility experiments. The results were exhaustively compared with the first menthol-based pharmaceutical cocrystal, i.e., lidocaine:l-menthol, discovered in our group 12 years ago. Furthermore, the stable lidocaine/dl-menthol phase diagram has been screened, thoroughly evaluated, and compared to the enantiopure phase diagram. Thus, it has been proven that the racemic vs. enantiopure coformer leads to increased solubility and improved dissolution of lidocaine due to the low stable form induced by menthol molecular disorder in the lidocaine:dl-menthol cocrystal. To date, the 1:1 lidocaine:dl-menthol cocrystal is the third menthol-based pharmaceutical cocrystal, after the 1:1 lidocaine:l-menthol and the 1:2 lopinavir:l-menthol cocrystals reported in 2010 and 2022, respectively. Overall, this study shows promising potential for designing new materials with both improved characteristics and functional properties in the fields of pharmaceutical sciences and crystal engineering.Read less <
English Keywords
DL-menthol
physico-chemical compatibility
thermodynamic stability
cocrystallization
dissolution kinetics
solubility enhancement
solid state
crystal engineering
lidocaine
Origin
Hal imported