Co-amorphous solid dispersion systems of lacidipine-spironolactone with improved dissolution rate and enhanced physical stability

Co-amorphous solid dispersion (C-ASD) systems have attracted great attention to improve the solubility of poorly soluble drugs, but the selection of an appropriate stabilizer to stabilize amorphous forms is still a huge challenge. Herein, C-ASD system of two clinical combined used drugs (lacidipine...

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Main Authors: Zhaomeng Wang (Author), Mengchi Sun (Author), Tian Liu (Author), Zisen Gao (Author), Qing Ye (Author), Xiao Tan (Author), Yanxian Hou (Author), Jin Sun (Author), Dun Wang (Author), Zhonggui He (Author)
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Published: Elsevier, 2019-01-01T00:00:00Z.
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042 |a dc 
100 1 0 |a Zhaomeng Wang  |e author 
700 1 0 |a Mengchi Sun  |e author 
700 1 0 |a Tian Liu  |e author 
700 1 0 |a Zisen Gao  |e author 
700 1 0 |a Qing Ye  |e author 
700 1 0 |a Xiao Tan  |e author 
700 1 0 |a Yanxian Hou  |e author 
700 1 0 |a Jin Sun  |e author 
700 1 0 |a Dun Wang  |e author 
700 1 0 |a Zhonggui He  |e author 
245 0 0 |a Co-amorphous solid dispersion systems of lacidipine-spironolactone with improved dissolution rate and enhanced physical stability 
260 |b Elsevier,   |c 2019-01-01T00:00:00Z. 
500 |a 1818-0876 
500 |a 10.1016/j.ajps.2018.11.001 
520 |a Co-amorphous solid dispersion (C-ASD) systems have attracted great attention to improve the solubility of poorly soluble drugs, but the selection of an appropriate stabilizer to stabilize amorphous forms is still a huge challenge. Herein, C-ASD system of two clinical combined used drugs (lacidipine (LCDP) and spironolactone (SPL)) as stabilizers to each other, was prepared by solvent evaporation method. The effects of variation in molar ratio of LCDP and SPL (3:1, 1:1, 1:3, 1:6, and 1:9) on the drug release characteristics were explored. Polarized light microscopy (PLM), powder X-ray diffraction (PXRD), differential scanning calorimetry (DSC) and thermogravimetric analysis (TGA) were employed to evaluate the solid states. Prepared C-ASDs were further studied for their stability under the high humidity (RH 92.5%). Further analysis of C-ASDs via Fourier-transform infrared spectroscopy (FTIR) and Raman spectroscopy confirmed that hydrogen bond interactions between the two drugs played a significant role in maintaining the stability of the C-ASDs systems. Moreover, molecular dynamic (MD) simulations provided a clear insight into the stability mechanism at the molecular level. This study demonstrated the novel drug-drug C-ASDs systems is a promising formulation strategy for improved dissolution rate and enhanced physical stability of poorly soluble drugs. Keywords: Co-amorphous solid dispersion, Lacidipine, Spironolactone, Stability, Molecular dynamic (MD) simulations 
546 |a EN 
690 |a Therapeutics. Pharmacology 
690 |a RM1-950 
655 7 |a article  |2 local 
786 0 |n Asian Journal of Pharmaceutical Sciences, Vol 14, Iss 1, Pp 95-103 (2019) 
787 0 |n http://www.sciencedirect.com/science/article/pii/S1818087618308250 
787 0 |n https://doaj.org/toc/1818-0876 
856 4 1 |u https://doaj.org/article/e2a95eea2799440b90a7cd5bc1b8788f  |z Connect to this object online.