The Effects of Different Solubilizing Agents on the Transport and Pharmacokinetic Profiles of Indomethacin: in vitro and in vivo Approach

The poor water solubility of new chemical entities (NCEs) discovered in pharmaceutical screening programs hampers their development and limits effective treatment delivery. Solubilizing agents offer a direct approach to increase solubility and oral bioavailability. This study employed indomethacin a...

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Published in:SAINS MALAYSIANA
Main Authors: Zainuddin, Siti aisyah; Ab Hamid, Abdul latip; Rafandi, Aqila iman; Mohamad, Mashani; Hamid, Khuriah abdul; Khalid, Syed haroon
Format: Article
Language:English
Published: UNIV KEBANGSAAN MALAYSIA, FAC SCIENCE & TECHNOLOGY 2024
Subjects:
Online Access:https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-recordWOS:001367374600017
author Zainuddin
Siti aisyah; Ab Hamid
Abdul latip; Rafandi
Aqila iman; Mohamad
Mashani; Hamid
Khuriah abdul; Khalid
Syed haroon
spellingShingle Zainuddin
Siti aisyah; Ab Hamid
Abdul latip; Rafandi
Aqila iman; Mohamad
Mashani; Hamid
Khuriah abdul; Khalid
Syed haroon
The Effects of Different Solubilizing Agents on the Transport and Pharmacokinetic Profiles of Indomethacin: in vitro and in vivo Approach
Science & Technology - Other Topics
author_facet Zainuddin
Siti aisyah; Ab Hamid
Abdul latip; Rafandi
Aqila iman; Mohamad
Mashani; Hamid
Khuriah abdul; Khalid
Syed haroon
author_sort Zainuddin
spelling Zainuddin, Siti aisyah; Ab Hamid, Abdul latip; Rafandi, Aqila iman; Mohamad, Mashani; Hamid, Khuriah abdul; Khalid, Syed haroon
The Effects of Different Solubilizing Agents on the Transport and Pharmacokinetic Profiles of Indomethacin: in vitro and in vivo Approach
SAINS MALAYSIANA
English
Article
The poor water solubility of new chemical entities (NCEs) discovered in pharmaceutical screening programs hampers their development and limits effective treatment delivery. Solubilizing agents offer a direct approach to increase solubility and oral bioavailability. This study employed indomethacin as a model drug from Biopharmaceutical Classification System (BCS) class II. Solubilizing agents, including propylene glycol, Transcutol P, Labrasol, PEG 400, and Tween 80, were separately added at 10% (v/v) to 1 mg/5 mL for in vitro diffusion chamber and 10 mg/kg body weight for in vivo oral absorption studies of indomethacin. Drug concentrations were analysed using reversed-phase high-performance liquid chromatography (HPLC). In vitro, 10% (v/v) labrasol, PEG 400, and Tween 80 significantly (p<0.01) increased indomethacin permeability across the rat intestinal layer. However, Transcutol P and PG (propylene glycol 10%v/v) showed no discernible impact on in vitro permeability. In the in vivo oral absorption study, PG (propylene glycol 10%v/v) and Transcutol P significantly (p<0.05) enhanced indomethacin absorption, while 10% (v/v) labrasol, PEG 400, and Tween 80 did not show significant effects. No in vitro-in vivo correlation (IVIVC) was observed, likely due to the physicochemical properties of indomethacin and the complex physiological environment in the gastrointestinal (GI) tract. Further investigations are necessary to comprehensively understand the factors affecting indomethacin solubility and absorption, considering both the drug's properties and the GI tract's physiological conditions.
UNIV KEBANGSAAN MALAYSIA, FAC SCIENCE & TECHNOLOGY
0126-6039

2024
53
11
10.17576/jsm-2024-5311-17
Science & Technology - Other Topics

WOS:001367374600017
https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-recordWOS:001367374600017
title The Effects of Different Solubilizing Agents on the Transport and Pharmacokinetic Profiles of Indomethacin: in vitro and in vivo Approach
title_short The Effects of Different Solubilizing Agents on the Transport and Pharmacokinetic Profiles of Indomethacin: in vitro and in vivo Approach
title_full The Effects of Different Solubilizing Agents on the Transport and Pharmacokinetic Profiles of Indomethacin: in vitro and in vivo Approach
title_fullStr The Effects of Different Solubilizing Agents on the Transport and Pharmacokinetic Profiles of Indomethacin: in vitro and in vivo Approach
title_full_unstemmed The Effects of Different Solubilizing Agents on the Transport and Pharmacokinetic Profiles of Indomethacin: in vitro and in vivo Approach
title_sort The Effects of Different Solubilizing Agents on the Transport and Pharmacokinetic Profiles of Indomethacin: in vitro and in vivo Approach
container_title SAINS MALAYSIANA
language English
format Article
description The poor water solubility of new chemical entities (NCEs) discovered in pharmaceutical screening programs hampers their development and limits effective treatment delivery. Solubilizing agents offer a direct approach to increase solubility and oral bioavailability. This study employed indomethacin as a model drug from Biopharmaceutical Classification System (BCS) class II. Solubilizing agents, including propylene glycol, Transcutol P, Labrasol, PEG 400, and Tween 80, were separately added at 10% (v/v) to 1 mg/5 mL for in vitro diffusion chamber and 10 mg/kg body weight for in vivo oral absorption studies of indomethacin. Drug concentrations were analysed using reversed-phase high-performance liquid chromatography (HPLC). In vitro, 10% (v/v) labrasol, PEG 400, and Tween 80 significantly (p<0.01) increased indomethacin permeability across the rat intestinal layer. However, Transcutol P and PG (propylene glycol 10%v/v) showed no discernible impact on in vitro permeability. In the in vivo oral absorption study, PG (propylene glycol 10%v/v) and Transcutol P significantly (p<0.05) enhanced indomethacin absorption, while 10% (v/v) labrasol, PEG 400, and Tween 80 did not show significant effects. No in vitro-in vivo correlation (IVIVC) was observed, likely due to the physicochemical properties of indomethacin and the complex physiological environment in the gastrointestinal (GI) tract. Further investigations are necessary to comprehensively understand the factors affecting indomethacin solubility and absorption, considering both the drug's properties and the GI tract's physiological conditions.
publisher UNIV KEBANGSAAN MALAYSIA, FAC SCIENCE & TECHNOLOGY
issn 0126-6039

publishDate 2024
container_volume 53
container_issue 11
doi_str_mv 10.17576/jsm-2024-5311-17
topic Science & Technology - Other Topics
topic_facet Science & Technology - Other Topics
accesstype
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