Phase solubility diagrams of cocrystals are explained by solubility product and solution complexation

被引:267
|
作者
Nehm, SJ [1 ]
Rodríguez-Spong, B [1 ]
Rodríguez-Hornedo, N [1 ]
机构
[1] Univ Michigan, Coll Pharm, Dept Pharmaceut Sci, Ann Arbor, MI 48109 USA
关键词
D O I
10.1021/cg0503346
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The purpose of this work was to develop a mathematical model that describes the solubility of cocrystals by taking into consideration the equilibria between cocrystal, cocrystal components, and solution complexes. These models are applied to the phase diagrams of carbamazepine/nicotinamide (CBZ/NCT) cocrystal in organic solvents. The CBZ/NCT (1: 1) cocrystal solubility was measured by suspending cocrystal in solutions of varying nicotinamide concentrations in ethanol, 2-propanol, or ethyl acetate. Results show that the solubility of the cocrystal decreases with increasing nicotinamide concentration. Mathematical models demonstrate that (1) the solubility of a cocrystal AB is described by the solubility product of cocrystal components and by solution complexation constants, (2) these equilibrium constants can be determined from solubility methods, and (3) graphical representation of the cocrystal solubility dependence on ligand concentration will serve as a diagnostic tool for the stoichiometry of solution complexes. CBZ/NCT cocrystal K-sp values increase as the cocrystal solubility increases, while K-11 values decrease. The dependence of cocrystal solubility on solubility product and complexation constants provides a powerful approach to design cocrystal screening methods and to formulate solutions with cocrystal components where crystallization does not occur.
引用
收藏
页码:592 / 600
页数:9
相关论文
共 50 条
  • [31] Using Salt Cocrystals to Improve the Solubility of Niclosamide
    Grifasi, Francesca
    Chierotti, Michele R.
    Gaglioti, Katia
    Gobetto, Roberto
    Maini, Lucia
    Braga, Dario
    Dichiarante, Elena
    Curzi, Marco
    CRYSTAL GROWTH & DESIGN, 2015, 15 (04) : 1939 - 1948
  • [32] Pharmaceutical cocrystals of nebivolol hydrochloride with enhanced solubility
    Nikam, Vilas J.
    Patil, Sanjay B.
    JOURNAL OF CRYSTAL GROWTH, 2020, 534 (534)
  • [33] Solubility Advantage of Amorphous Drugs and Pharmaceutical Cocrystals
    Babu, N. Jagadeesh
    Nangia, Ashwini
    CRYSTAL GROWTH & DESIGN, 2011, 11 (07) : 2662 - 2679
  • [34] Cocrystals of Quercetin with Improved Solubility and Oral Bioavailability
    Smith, Adam J.
    Kavuru, Padmini
    Wojtas, Lukasz
    Zaworotko, Michael J.
    Shytle, R. Douglas
    MOLECULAR PHARMACEUTICS, 2011, 8 (05) : 1867 - 1876
  • [35] Cocrystals of Baicalein with Higher Solubility and Enhanced Bioavailability
    Zhu, Bingqing
    Zhang, Qj
    Wang, Jian-Rong
    Mei, Xuefeng
    CRYSTAL GROWTH & DESIGN, 2017, 17 (04) : 1893 - 1901
  • [36] Cocrystals of hydrochlorothiazide: Optimizing solubility and membrane permeability
    Gopi, Shanmukha Prasad
    Desiraju, Gautam R.
    ACTA CRYSTALLOGRAPHICA A-FOUNDATION AND ADVANCES, 2017, 73 : C210 - C210
  • [37] Investigation of possible solubility and dissolution advantages of cocrystals, I: Aqueous solubility and dissolution rates of ketoconazole and its cocrystals as functions of pH
    Vasoya, Jaydip M.
    Shah, Ankita, V
    Serajuddin, Abu T. M.
    ADMET AND DMPK, 2019, 7 (02): : 106 - 129
  • [38] Design of pharmaceutical cocrystals for drug solubility improvement
    Perlovich, G. L.
    Manin, A. N.
    RUSSIAN JOURNAL OF GENERAL CHEMISTRY, 2014, 84 (02) : 407 - 414
  • [39] Spring and parachute: How cocrystals enhance solubility
    Bavishi, Dhara D.
    Borkhataria, Chetan H.
    PROGRESS IN CRYSTAL GROWTH AND CHARACTERIZATION OF MATERIALS, 2016, 62 (03) : 1 - 8
  • [40] Melting point- solubility relations of cocrystals
    Bathori, N.
    ACTA CRYSTALLOGRAPHICA A-FOUNDATION AND ADVANCES, 2014, 70 : C990 - C990