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Formulation and evaluation of controlled-release of telmisartan microspheres: In vitro/in vivo study

The aim of this work was to design a controlled-release drug-delivery system for the angiotensin-II receptor antagonist drug telmisartan. Telmisartan was encapsulated with different EUDRAGIT polymers by an emulsion solvent evaporation technique and the physicochemical properties of the formulations...

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Autores principales: Gaur, Praveen Kumar, Mishra, Shikha, Bajpai, Meenakshi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Taiwan Food and Drug Administration 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9354994/
https://www.ncbi.nlm.nih.gov/pubmed/28911472
http://dx.doi.org/10.1016/j.jfda.2014.05.001
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author Gaur, Praveen Kumar
Mishra, Shikha
Bajpai, Meenakshi
author_facet Gaur, Praveen Kumar
Mishra, Shikha
Bajpai, Meenakshi
author_sort Gaur, Praveen Kumar
collection PubMed
description The aim of this work was to design a controlled-release drug-delivery system for the angiotensin-II receptor antagonist drug telmisartan. Telmisartan was encapsulated with different EUDRAGIT polymers by an emulsion solvent evaporation technique and the physicochemical properties of the formulations were characterized. Using a solvent evaporation method, white spherical microspheres with particle sizes of 629.9–792.1 μm were produced. The in vitro drug release was studied in three different pH media (pH 1.2 for 2 hours, pH 6.8 for 4 hours, and pH 7.4 for 18 hours). The formulations were then evaluated for their pharmacokinetic parameters. The entrapment efficiency of these microspheres was between 58.6% and 90.56%. The obtained microspheres showed good flow properties, which were evaluated in terms of angle of repose (15.29–26.32), bulk and tapped densities (0.37–0.53 and 0.43–0.64, respectively), Carr indices and Hausner ratio (12.94–19.14% and 1.14–1.23, respectively). No drug release was observed in the simulated gastric medium up to 2 hours; however, a change in pH from 1.2 to 6.8 increased the drug release. At pH 7.4, formulations with EUDRAGIT RS 100 showed a steady drug release. The microsphere formulation TMRS-3 (i.e., microspheres containing 2-mg telmisartan) gave the highest C(max) value (6.8641 μg/mL) at 6 hours, which was three times higher than C(max) for telmisartan oral suspension (TOS). Correspondingly, the area under the curve for TMRS-3 was 8.5 times higher than TOS. Particle size and drug release depended on the nature and content of polymer used. The drug release mechanism of the TMRS-3 formulation can be explained using the Higuchi model. The controlled release of drug from TMRS-3 also provides for higher plasma drug content and improved bioavailability.
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spelling pubmed-93549942022-08-09 Formulation and evaluation of controlled-release of telmisartan microspheres: In vitro/in vivo study Gaur, Praveen Kumar Mishra, Shikha Bajpai, Meenakshi J Food Drug Anal Original Article The aim of this work was to design a controlled-release drug-delivery system for the angiotensin-II receptor antagonist drug telmisartan. Telmisartan was encapsulated with different EUDRAGIT polymers by an emulsion solvent evaporation technique and the physicochemical properties of the formulations were characterized. Using a solvent evaporation method, white spherical microspheres with particle sizes of 629.9–792.1 μm were produced. The in vitro drug release was studied in three different pH media (pH 1.2 for 2 hours, pH 6.8 for 4 hours, and pH 7.4 for 18 hours). The formulations were then evaluated for their pharmacokinetic parameters. The entrapment efficiency of these microspheres was between 58.6% and 90.56%. The obtained microspheres showed good flow properties, which were evaluated in terms of angle of repose (15.29–26.32), bulk and tapped densities (0.37–0.53 and 0.43–0.64, respectively), Carr indices and Hausner ratio (12.94–19.14% and 1.14–1.23, respectively). No drug release was observed in the simulated gastric medium up to 2 hours; however, a change in pH from 1.2 to 6.8 increased the drug release. At pH 7.4, formulations with EUDRAGIT RS 100 showed a steady drug release. The microsphere formulation TMRS-3 (i.e., microspheres containing 2-mg telmisartan) gave the highest C(max) value (6.8641 μg/mL) at 6 hours, which was three times higher than C(max) for telmisartan oral suspension (TOS). Correspondingly, the area under the curve for TMRS-3 was 8.5 times higher than TOS. Particle size and drug release depended on the nature and content of polymer used. The drug release mechanism of the TMRS-3 formulation can be explained using the Higuchi model. The controlled release of drug from TMRS-3 also provides for higher plasma drug content and improved bioavailability. Taiwan Food and Drug Administration 2014-08-08 /pmc/articles/PMC9354994/ /pubmed/28911472 http://dx.doi.org/10.1016/j.jfda.2014.05.001 Text en © 2014 Taiwan Food and Drug Administration https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC-BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) ).
spellingShingle Original Article
Gaur, Praveen Kumar
Mishra, Shikha
Bajpai, Meenakshi
Formulation and evaluation of controlled-release of telmisartan microspheres: In vitro/in vivo study
title Formulation and evaluation of controlled-release of telmisartan microspheres: In vitro/in vivo study
title_full Formulation and evaluation of controlled-release of telmisartan microspheres: In vitro/in vivo study
title_fullStr Formulation and evaluation of controlled-release of telmisartan microspheres: In vitro/in vivo study
title_full_unstemmed Formulation and evaluation of controlled-release of telmisartan microspheres: In vitro/in vivo study
title_short Formulation and evaluation of controlled-release of telmisartan microspheres: In vitro/in vivo study
title_sort formulation and evaluation of controlled-release of telmisartan microspheres: in vitro/in vivo study
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9354994/
https://www.ncbi.nlm.nih.gov/pubmed/28911472
http://dx.doi.org/10.1016/j.jfda.2014.05.001
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