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Formulation and Evaluation of a Self-Microemulsifying Drug Delivery System of Raloxifene with Improved Solubility and Oral Bioavailability

Poor aqueous solubility and dissolution limit the oral bioavailability of Biopharmaceutics Classification System (BCS) class II drugs. In this study, we aimed to improve the aqueous solubility and oral bioavailability of raloxifene hydrochloride (RLX), a BCS class II drug, using a self-microemulsify...

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Autores principales: Ansari, Muhammad Mohsin, Vo, Dang-Khoa, Choi, Ho-Ik, Ryu, Jeong-Su, Bae, Yumi, Bukhari, Nadeem Irfan, Zeb, Alam, Kim, Jin-Ki, Maeng, Han-Joo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10459739/
https://www.ncbi.nlm.nih.gov/pubmed/37631288
http://dx.doi.org/10.3390/pharmaceutics15082073
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author Ansari, Muhammad Mohsin
Vo, Dang-Khoa
Choi, Ho-Ik
Ryu, Jeong-Su
Bae, Yumi
Bukhari, Nadeem Irfan
Zeb, Alam
Kim, Jin-Ki
Maeng, Han-Joo
author_facet Ansari, Muhammad Mohsin
Vo, Dang-Khoa
Choi, Ho-Ik
Ryu, Jeong-Su
Bae, Yumi
Bukhari, Nadeem Irfan
Zeb, Alam
Kim, Jin-Ki
Maeng, Han-Joo
author_sort Ansari, Muhammad Mohsin
collection PubMed
description Poor aqueous solubility and dissolution limit the oral bioavailability of Biopharmaceutics Classification System (BCS) class II drugs. In this study, we aimed to improve the aqueous solubility and oral bioavailability of raloxifene hydrochloride (RLX), a BCS class II drug, using a self-microemulsifying drug delivery system (SMEDDS). Based on the solubilities of RLX, Capryol 90, Tween 80/Labrasol ALF, and polyethylene glycol 400 (PEG-400) were selected as the oil, surfactant mixture, and cosurfactant, respectively. Pseudo-ternary phase diagrams were constructed to determine the optimal composition (Capryol 90/Tween 80/Labrasol ALF/PEG-400 in 150/478.1/159.4/212.5 volume ratio) for RLX-SMEDDS with a small droplet size (147.1 nm) and stable microemulsification (PDI: 0.227). Differential scanning calorimetry and powder X-ray diffraction of lyophilized RLX-SMEDDS revealed the loss of crystallinity, suggesting a molecularly dissolved or amorphous state of RLX in the SMEDDS formulation. Moreover, RLX-SMEDDS exhibited significantly higher saturation solubility and dissolution rate in water, simulated gastric fluid (pH 1.2), and simulated intestinal fluid (pH 6.8) than RLX powder. Additionally, oral administration of RLX-SMEDDS to female rats resulted in 1.94- and 1.80-fold higher area under the curve and maximum plasma concentration, respectively, than the RLX dispersion. Collectively, our findings suggest SMEDDS is a promising oral formulation to enhance the therapeutic efficacy of RLX.
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spelling pubmed-104597392023-08-27 Formulation and Evaluation of a Self-Microemulsifying Drug Delivery System of Raloxifene with Improved Solubility and Oral Bioavailability Ansari, Muhammad Mohsin Vo, Dang-Khoa Choi, Ho-Ik Ryu, Jeong-Su Bae, Yumi Bukhari, Nadeem Irfan Zeb, Alam Kim, Jin-Ki Maeng, Han-Joo Pharmaceutics Article Poor aqueous solubility and dissolution limit the oral bioavailability of Biopharmaceutics Classification System (BCS) class II drugs. In this study, we aimed to improve the aqueous solubility and oral bioavailability of raloxifene hydrochloride (RLX), a BCS class II drug, using a self-microemulsifying drug delivery system (SMEDDS). Based on the solubilities of RLX, Capryol 90, Tween 80/Labrasol ALF, and polyethylene glycol 400 (PEG-400) were selected as the oil, surfactant mixture, and cosurfactant, respectively. Pseudo-ternary phase diagrams were constructed to determine the optimal composition (Capryol 90/Tween 80/Labrasol ALF/PEG-400 in 150/478.1/159.4/212.5 volume ratio) for RLX-SMEDDS with a small droplet size (147.1 nm) and stable microemulsification (PDI: 0.227). Differential scanning calorimetry and powder X-ray diffraction of lyophilized RLX-SMEDDS revealed the loss of crystallinity, suggesting a molecularly dissolved or amorphous state of RLX in the SMEDDS formulation. Moreover, RLX-SMEDDS exhibited significantly higher saturation solubility and dissolution rate in water, simulated gastric fluid (pH 1.2), and simulated intestinal fluid (pH 6.8) than RLX powder. Additionally, oral administration of RLX-SMEDDS to female rats resulted in 1.94- and 1.80-fold higher area under the curve and maximum plasma concentration, respectively, than the RLX dispersion. Collectively, our findings suggest SMEDDS is a promising oral formulation to enhance the therapeutic efficacy of RLX. MDPI 2023-08-02 /pmc/articles/PMC10459739/ /pubmed/37631288 http://dx.doi.org/10.3390/pharmaceutics15082073 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ansari, Muhammad Mohsin
Vo, Dang-Khoa
Choi, Ho-Ik
Ryu, Jeong-Su
Bae, Yumi
Bukhari, Nadeem Irfan
Zeb, Alam
Kim, Jin-Ki
Maeng, Han-Joo
Formulation and Evaluation of a Self-Microemulsifying Drug Delivery System of Raloxifene with Improved Solubility and Oral Bioavailability
title Formulation and Evaluation of a Self-Microemulsifying Drug Delivery System of Raloxifene with Improved Solubility and Oral Bioavailability
title_full Formulation and Evaluation of a Self-Microemulsifying Drug Delivery System of Raloxifene with Improved Solubility and Oral Bioavailability
title_fullStr Formulation and Evaluation of a Self-Microemulsifying Drug Delivery System of Raloxifene with Improved Solubility and Oral Bioavailability
title_full_unstemmed Formulation and Evaluation of a Self-Microemulsifying Drug Delivery System of Raloxifene with Improved Solubility and Oral Bioavailability
title_short Formulation and Evaluation of a Self-Microemulsifying Drug Delivery System of Raloxifene with Improved Solubility and Oral Bioavailability
title_sort formulation and evaluation of a self-microemulsifying drug delivery system of raloxifene with improved solubility and oral bioavailability
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10459739/
https://www.ncbi.nlm.nih.gov/pubmed/37631288
http://dx.doi.org/10.3390/pharmaceutics15082073
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