Solid-State Characterization and Relative Formation Enthalpies To Evaluate Stability of Cocrystals of an Antidiabetic Drug

被引:11
作者
Duggirala, Naga Kiran [1 ,4 ,5 ]
Schmidt, Heather L. Frericks [2 ]
Lei, Zhaohui [3 ]
Zaworotko, Michael J. [4 ,5 ]
Krzyzaniak, Joseph F. [2 ]
Arora, Kapildev K. [2 ]
机构
[1] Univ Minnesota, Dept Pharmaceut, Minneapolis, MN 55455 USA
[2] Pfizer Worldwide Res & Dev, Drug Prod Design, Groton, CT 06340 USA
[3] Pfizer Worldwide Res & Dev, Analyt Res & Dev, Groton, CT 06340 USA
[4] Univ Limerick, Dept Chem Sci, Limerick V94 T9PX, Ireland
[5] Univ Limerick, Bernal Inst, Limerick V94 T9PX, Ireland
关键词
pharmaceutical cocrystals; solid-state characterization; nuclear magnetic resonance; formation enthalpies; physical stability; PHARMACEUTICAL COCRYSTALS; CO-CRYSTALS; HYDROGEN-BONDS; ACID; DISSOCIATION; SOLUBILITY; COMPLEXES; BIOAVAILABILITY; NICOTINAMIDE; POLYMORPHS;
D O I
10.1021/acs.molpharmaceut.8b00061
中图分类号
R-3 [医学研究方法]; R3 [基础医学];
学科分类号
1001 ;
摘要
The current study integrates formation enthalpy and traditional slurry experiments to quickly assess the physical stability of cocrystal drug substance candidates for their potential to support drug development. Cocrystals of an antidiabetic drug (GKA) with nicotinamide (NMA), vanillic acid (VLA), and ethyl vanillin (EVL) were prepared and characterized by powder X-ray diffractometry (PXRD), spectroscopic, and thermal techniques. The formation enthalpies of the cocrystals, and their physical mixtures (GKA + coformer) were measured by the differential scanning calorimetry (DSC) method reported by Zhang et al. [Cryst. Growth Des. 2012, 12 (8), 4090-4097]. The experimentally measured differences in the relative formation enthalpies obtained by integrating the heat flow of each cocrystal against the respective physical mixture were correlated to the physical stability of the cocrystals in the solid state. The relative formation enthalpies of all of the cocrystals studied suggest that the cocrystals are not physically stable at room temperature versus their physical mixtures. To further address relative stability, the cocrystals were slurried in 30% v/v aqueous ethanol, and it was observed that all of the cocrystals revert to GKA within 48 h at room temperature. The slurry experiments are consistent with the relative instability of the cocrystals with respect to their physical mixtures suggested by the DSC results.
引用
收藏
页码:1901 / 1908
页数:8
相关论文
共 46 条
  • [1] Building co-crystals with molecular sense and supramolecular sensibility
    Aakeröy, CB
    Salmon, DJ
    [J]. CRYSTENGCOMM, 2005, 7 : 439 - 448
  • [2] A high-yielding supramolecular reaction
    Aakeröy, CB
    Beatty, AM
    Helfrich, BA
    [J]. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2002, 124 (48) : 14425 - 14432
  • [3] Competing hydrogen-bond donors: phenols vs. cyanooximes
    Aakeroy, Christer B.
    Epa, Kanishka N.
    Forbes, Safiyyah
    Desper, John
    [J]. CRYSTENGCOMM, 2013, 15 (30): : 5946 - 5949
  • [4] Rational coformer or solvent selection for pharmaceutical cocrystallization or desolvation
    Abramov, Yuriy A.
    Loschen, Christoph
    Klamt, Andreas
    [J]. JOURNAL OF PHARMACEUTICAL SCIENCES, 2012, 101 (10) : 3687 - 3697
  • [5] Polymorphs, Salts, and Cocrystals: What's in a Name?
    Aitipamula, Srinivasulu
    Banerjee, Rahul
    Bansal, Arvind K.
    Biradha, Kumar
    Cheney, Miranda L.
    Choudhury, Angshuman Roy
    Desiraju, Gautam R.
    Dikundwar, Amol G.
    Dubey, Ritesh
    Duggirala, Nagakiran
    Ghogale, Preetam P.
    Ghosh, Soumyajit
    Goswami, Pramod Kumar
    Goud, N. Rajesh
    Jetti, Ram R. K. R.
    Karpinski, Piotr
    Kaushik, Poonam
    Kumar, Dinesh
    Kumar, Vineet
    Moulton, Brian
    Mukherjee, Arijit
    Mukherjee, Gargi
    Myerson, Allan S.
    Puri, Vibha
    Ramanan, Arunachalam
    Rajamannar, T.
    Reddy, C. Malla
    Rodriguez-Hornedo, Nair
    Rogers, Robin D.
    Row, T. N. Guru
    Sanphui, Palash
    Shan, Ning
    Shete, Ganesh
    Singh, Amit
    Sun, Changquan C.
    Swift, Jennifer A.
    Thaimattam, Ram
    Thakur, Tejender S.
    Thaper, Rajesh Kumar
    Thomas, Sajesh P.
    Tothadi, Srinu
    Vangala, Venu R.
    Variankaval, Narayan
    Vishweshwar, Peddy
    Weyna, David R.
    Zaworotko, Michael J.
    [J]. CRYSTAL GROWTH & DESIGN, 2012, 12 (05) : 2147 - 2152
  • [6] The Cambridge Structural Database: a quarter of a million crystal structures and rising
    Allen, FH
    [J]. ACTA CRYSTALLOGRAPHICA SECTION B-STRUCTURAL SCIENCE, 2002, 58 (3 PART 1): : 380 - 388
  • [7] Apperley D.C., 2012, Solid-State NMR: Basic Principles Practice
  • [8] Mechanochemical synthesis of pyrazine: dicarboxylic acid cocrystals and a study of dissociation by quantitative phase analysis
    Arhangelskis, Mihails
    Lloyd, Gareth O.
    Jones, William
    [J]. CRYSTENGCOMM, 2012, 14 (16): : 5203 - 5208
  • [9] Arora K.K., 2009, Polymorphism in Pharmaceutical Solids, V2, P281
  • [10] Comparative evaluation of pKa prediction tools on a drug discovery dataset
    Balogh, Gyoergy T.
    Tarcsay, Akos
    Keseru, Gyoergy M.
    [J]. JOURNAL OF PHARMACEUTICAL AND BIOMEDICAL ANALYSIS, 2012, 67-68 : 63 - 70