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

A novel, supersaturable self-microemulsifying drug delivery system (S-SMEDDS) was successfully formulated to enhance the dissolution and oral absorption of valsartan (VST), a poorly water-soluble drug, while reducing the total quantity for administration. Poloxamer 407 is a selectable, supersaturati...

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Autores principales: Yeom, Dong Woo, Chae, Bo Ram, Son, Ho Yong, Kim, Jin Han, Chae, Jun Soo, Song, Seh Hyon, Oh, Dongho, Choi, Young Wook
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Dove Medical Press 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5428796/
https://www.ncbi.nlm.nih.gov/pubmed/28507434
http://dx.doi.org/10.2147/IJN.S136599
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author Yeom, Dong Woo
Chae, Bo Ram
Son, Ho Yong
Kim, Jin Han
Chae, Jun Soo
Song, Seh Hyon
Oh, Dongho
Choi, Young Wook
author_facet Yeom, Dong Woo
Chae, Bo Ram
Son, Ho Yong
Kim, Jin Han
Chae, Jun Soo
Song, Seh Hyon
Oh, Dongho
Choi, Young Wook
author_sort Yeom, Dong Woo
collection PubMed
description A novel, supersaturable self-microemulsifying drug delivery system (S-SMEDDS) was successfully formulated to enhance the dissolution and oral absorption of valsartan (VST), a poorly water-soluble drug, while reducing the total quantity for administration. Poloxamer 407 is a selectable, supersaturating agent for VST-containing SMEDDS composed of 10% Capmul(®) MCM, 45% Tween(®) 20, and 45% Transcutol(®) P. The amounts of SMEDDS and Poloxamer 407 were chosen as formulation variables for a 3-level factorial design. Further optimization was established by weighting different levels of importance on response variables for dissolution and total quantity, resulting in an optimal S-SMEDDS in large quantity (S-SMEDDS_LQ; 352 mg in total) and S-SMEDDS in reduced quantity (S-SMEDDS_RQ; 144.6 mg in total). Good agreement was observed between predicted and experimental values for response variables. Consequently, compared with VST powder or suspension and SMEDDS, both S-SMEDDS_LQ and S-SMEDDS_RQ showed excellent in vitro dissolution and in vivo oral bioavailability in rats. The magnitude of dissolution and absorption-enhancing capacities using quantity-based comparisons was in the order S-SMEDDS_RQ > S-SMEDDS_LQ > SMEDDS > VST powder or suspension. Thus, we concluded that, in terms of developing an effective SMEDDS preparation with minimal total quantity, S-SMEDDS_RQ is a promising candidate.
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spelling pubmed-54287962017-05-15 Enhanced oral bioavailability of valsartan using a polymer-based supersaturable self-microemulsifying drug delivery system Yeom, Dong Woo Chae, Bo Ram Son, Ho Yong Kim, Jin Han Chae, Jun Soo Song, Seh Hyon Oh, Dongho Choi, Young Wook Int J Nanomedicine Original Research A novel, supersaturable self-microemulsifying drug delivery system (S-SMEDDS) was successfully formulated to enhance the dissolution and oral absorption of valsartan (VST), a poorly water-soluble drug, while reducing the total quantity for administration. Poloxamer 407 is a selectable, supersaturating agent for VST-containing SMEDDS composed of 10% Capmul(®) MCM, 45% Tween(®) 20, and 45% Transcutol(®) P. The amounts of SMEDDS and Poloxamer 407 were chosen as formulation variables for a 3-level factorial design. Further optimization was established by weighting different levels of importance on response variables for dissolution and total quantity, resulting in an optimal S-SMEDDS in large quantity (S-SMEDDS_LQ; 352 mg in total) and S-SMEDDS in reduced quantity (S-SMEDDS_RQ; 144.6 mg in total). Good agreement was observed between predicted and experimental values for response variables. Consequently, compared with VST powder or suspension and SMEDDS, both S-SMEDDS_LQ and S-SMEDDS_RQ showed excellent in vitro dissolution and in vivo oral bioavailability in rats. The magnitude of dissolution and absorption-enhancing capacities using quantity-based comparisons was in the order S-SMEDDS_RQ > S-SMEDDS_LQ > SMEDDS > VST powder or suspension. Thus, we concluded that, in terms of developing an effective SMEDDS preparation with minimal total quantity, S-SMEDDS_RQ is a promising candidate. Dove Medical Press 2017-05-08 /pmc/articles/PMC5428796/ /pubmed/28507434 http://dx.doi.org/10.2147/IJN.S136599 Text en © 2017 Yeom et al. This work is published and licensed by Dove Medical Press Limited The full terms of this license are available at https://www.dovepress.com/terms.php and incorporate the Creative Commons Attribution – Non Commercial (unported, v3.0) License (http://creativecommons.org/licenses/by-nc/3.0/). By accessing the work you hereby accept the Terms. Non-commercial uses of the work are permitted without any further permission from Dove Medical Press Limited, provided the work is properly attributed.
spellingShingle Original Research
Yeom, Dong Woo
Chae, Bo Ram
Son, Ho Yong
Kim, Jin Han
Chae, Jun Soo
Song, Seh Hyon
Oh, Dongho
Choi, Young Wook
Enhanced oral bioavailability of valsartan using a polymer-based supersaturable self-microemulsifying drug delivery system
title Enhanced oral bioavailability of valsartan using a polymer-based supersaturable self-microemulsifying drug delivery system
title_full Enhanced oral bioavailability of valsartan using a polymer-based supersaturable self-microemulsifying drug delivery system
title_fullStr Enhanced oral bioavailability of valsartan using a polymer-based supersaturable self-microemulsifying drug delivery system
title_full_unstemmed Enhanced oral bioavailability of valsartan using a polymer-based supersaturable self-microemulsifying drug delivery system
title_short Enhanced oral bioavailability of valsartan using a polymer-based supersaturable self-microemulsifying drug delivery system
title_sort enhanced oral bioavailability of valsartan using a polymer-based supersaturable self-microemulsifying drug delivery system
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5428796/
https://www.ncbi.nlm.nih.gov/pubmed/28507434
http://dx.doi.org/10.2147/IJN.S136599
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