Literature DB >> 33633449

Development of a Solid Supersaturable Micelle of Revaprazan for Improved Dissolution and Oral Bioavailability Using Box-Behnken Design.

Yoon Tae Goo1, Cheol-Ki Sa1, Ji Yeh Choi2, Min Song Kim1, Chang Hyun Kim1, Hyeon Kyun Kim1, Young Wook Choi1.   

Abstract

PURPOSE: To enhance the oral bioavailability of revaprazan (RVP), a novel solid, supersaturable micelle (SSuM) was developed.
METHODS: Surfactants and solid carriers were screened based on a solubility and a flowability test, respectively. Supersaturating agents, including Poloxamer 407 (P407), were screened. The SSuM was optimized using a Box-Behnken design with three independent variables, including Gelucire 44/14:Brij L4 (G44/BL4; X1) and the amounts of Florite PS-10 (FLO; X2) and Vivapur 105 (VP105; X3), and three response variables, ie, dissolution efficiency at 30 min (Y1), dissolution enhancing capacity (Y2), and Carr's index (Y3). The solid state property was evaluated, and a dissolution test was conducted. RVP, Revanex®, solid micelle (P407-free from the composition of SSuM), and SSuM were orally administrated to rats (RVP 20 mg equivalent/kg) for in vivo pharmacokinetic study.
RESULTS: G44 and BL4 showed great solubility, with a critical micelle concentration range of 119.2-333.0 μg/mL. P407 had an excellent supersaturating effect. FLO and VP105 were selected as solid carriers, with a critical solidifying ratio (g/mL) of 0.30 and 0.91, respectively. With optimized values of X1 (-0.41), X2 (0.31), and X3 (-0.78), RVP (200 mg)-containing SSuM consisting of G44 (253.8 mg), BL4 (106.2 mg), FLO (99.3 mg), VP105 (199.8 mg), and P407 (40 mg) was developed, resulting in Y1 (40.3%), Y2 (0.008), and Y3 (12.3%). RVP existed in an amorphous state in the optimized SSuM, and the SSuM formed a nanosized dispersion in the aqueous phase, with approximately 71.7% dissolution at 2 h. The optimized SSuM improved the relative bioavailability of RVP in rats by approximately 478%, 276%, and 161% compared to raw RVP, Revanex®, and solid micelle, respectively.
CONCLUSION: The optimized SSuM has great potential for the development of solidified formulations of poorly water-soluble drugs with improved oral absorption.
© 2021 Goo et al.

Entities:  

Keywords:  Box-Behnken design; dissolution; oral bioavailability; revaprazan; solid micelle; supersaturation

Mesh:

Substances:

Year:  2021        PMID: 33633449      PMCID: PMC7901570          DOI: 10.2147/IJN.S298450

Source DB:  PubMed          Journal:  Int J Nanomedicine        ISSN: 1176-9114


  45 in total

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Review 3.  Response surface methodology (RSM) as a tool for optimization in analytical chemistry.

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Journal:  Pharm Res       Date:  2012-01-05       Impact factor: 4.200

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Authors:  Dimple Pabla; Fatemeh Akhlaghi; Hossein Zia
Journal:  Eur J Pharm Sci       Date:  2010-05-16       Impact factor: 4.384

Review 7.  Novel anti-Helicobacter pylori therapies.

Authors:  Sukhbir K Shahid
Journal:  Pharm Pat Anal       Date:  2014-07

8.  Improved oral bioavailability of poorly water-soluble indirubin by a supersaturatable self-microemulsifying drug delivery system.

Authors:  Zhi-Qiang Chen; Ying Liu; Ji-Hui Zhao; Lan Wang; Nian-Ping Feng
Journal:  Int J Nanomedicine       Date:  2012-02-23

9.  Enhanced oral bioavailability of valsartan using a polymer-based supersaturable self-microemulsifying drug delivery system.

Authors:  Dong Woo Yeom; Bo Ram Chae; Ho Yong Son; Jin Han Kim; Jun Soo Chae; Seh Hyon Song; Dongho Oh; Young Wook Choi
Journal:  Int J Nanomedicine       Date:  2017-05-08

10.  Supersaturated polymeric micelles for oral silybin delivery: the role of the Soluplus-PVPVA complex.

Authors:  Chunliu Zhu; Shuang Gong; Jinsong Ding; Miaorong Yu; Ejaj Ahmad; Yi Feng; Yong Gan
Journal:  Acta Pharm Sin B       Date:  2018-09-10       Impact factor: 11.413

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