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Development of a rebamipide solid dispersion system with improved dissolution and oral bioavailability

Authors
Pradhan, RoshanTuan Hiep TranChoi, Ju YeonChoi, Im SoonChoi, Han-GonYong, Chul SoonKim, Jong Oh
Issue Date
Apr-2015
Publisher
PHARMACEUTICAL SOC KOREA
Keywords
Rebamipide; Solubility; Solid dispersion; Spray-drying; Bioavailability
Citation
ARCHIVES OF PHARMACAL RESEARCH, v.38, no.4, pp 522 - 533
Pages
12
Indexed
SCIE
SCOPUS
KCI
Journal Title
ARCHIVES OF PHARMACAL RESEARCH
Volume
38
Number
4
Start Page
522
End Page
533
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/18766
DOI
10.1007/s12272-014-0399-0
ISSN
0253-6269
1976-3786
Abstract
The purpose of this study was to improve the gastric solubility and bioavailability of rebamipide (RBM) by preparing the RBM solid dispersion tablet (RBM-SDT) from solid dispersion powder prepared by spray-drying technique. For preparation of rebamipide solid dispersions (RBM-SDs), solubility study was performed in various hydrophilic carriers and alkalizers, among which sodium alginate and sodium carbonate were selected as the hydrophilic polymer and alkalizer, respectively. Different combinations of drug-polymer-alkalizer were dissolved in aqueous solution and spray-dried in order to obtain solid dispersions. Noticeable improvement in aqueous solubility (approximately 200 times) and in vitro dissolution rate was observed by RBM-SDs, compared to RBM powder. The optimized formulation of RBM-SD powder consisted of RBM powder/sodium alginate/sodium carbonate at the weight ratio of 1/2/2. The transformation of crystalline RBM to amorphous RBM-SD powder was clearly demonstrated by powder X-ray diffraction, differential scanning calorimetry (DSC) and scanning electron microscopy. The optimized RBM-SD was formulated in tablet dosage form, containing approximately 2 % sodium lauryl sulphate and poloxamer F68 as wetting agents. The RBM-SDT exhibited enhanced dissolution in hydrochloric acid buffer (pH 1.2) and distilled water. Moreover, pharmacokinetic study in rats showed higher AUC and C-max for RBM-SDT than those for RBM powder and commercial product. Thus, the developed RBM-SDT formulation can be more efficacious for improving oral bioavailability of RBM.
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