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Development of Press-Coated, Floating-Pulsatile Drug Delivery of Lisinopril

Lisinopril is an angiotensin-converting enzyme (ACE) inhibitor, primarily used for the treatment of hypertension, congestive heart failure, and heart attack. It belongs to BCS class III having a half-life of 12 hrs and 25% bioavailability. The purpose of the present work was to develop a press-coate...

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Autores principales: Jagdale, Swati C., Suryawanshi, Vishnu M., Pandya, Sudhir V., Kuchekar, Bhanudas S., Chabukswar, Aniruddha R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Österreichische Apotheker-Verlagsgesellschaft 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4065132/
https://www.ncbi.nlm.nih.gov/pubmed/24959410
http://dx.doi.org/10.3797/scipharm.1301-27
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author Jagdale, Swati C.
Suryawanshi, Vishnu M.
Pandya, Sudhir V.
Kuchekar, Bhanudas S.
Chabukswar, Aniruddha R.
author_facet Jagdale, Swati C.
Suryawanshi, Vishnu M.
Pandya, Sudhir V.
Kuchekar, Bhanudas S.
Chabukswar, Aniruddha R.
author_sort Jagdale, Swati C.
collection PubMed
description Lisinopril is an angiotensin-converting enzyme (ACE) inhibitor, primarily used for the treatment of hypertension, congestive heart failure, and heart attack. It belongs to BCS class III having a half-life of 12 hrs and 25% bioavailability. The purpose of the present work was to develop a press-coated, floating-pulsatile drug delivery system. The core tablet was formulated using the super-disintegrants crosprovidone and croscarmellose sodium. A press-coated tablet (barrier layer) contained the polymer carrageenan, xanthan gum, HPMC K4M, and HPMC K15M. The buoyant layer was optimized with HPMC K100M, sodium bicarbonate, and citric acid. The tablets were evaluated for physical characteristics, floating lag time, swelling index, FTIR, DSC, and in vitro and in vivo behavior. The 5% superdisintgrant showed good results. The FTIR and DSC study predicted no chemical interactions between the drug and excipients. The formulation containing xanthan gum showed drug retaining abilities, but failed to float. The tablet containing HPMC K15M showed a high swelling index. The lag time for the tablet coated with 200 mg carrageenan was 3±0.1 hrs with 99.99±1.5% drug release; with 140 mg HPMC K4M, the lag time was 3±0.1 hrs with 99.71±1.2% drug release; and with 120 mg HPMC K15M, the lag time was 3±0.2 hrs with 99.98±1.7% drug release. The release mechanism of the tablet followed the Korsmeyer-Peppas equation and a first-order release pattern. Floating and lag time behavior have shown good in vitro and in vivo correlations.
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spelling pubmed-40651322014-06-23 Development of Press-Coated, Floating-Pulsatile Drug Delivery of Lisinopril Jagdale, Swati C. Suryawanshi, Vishnu M. Pandya, Sudhir V. Kuchekar, Bhanudas S. Chabukswar, Aniruddha R. Sci Pharm Research Article Lisinopril is an angiotensin-converting enzyme (ACE) inhibitor, primarily used for the treatment of hypertension, congestive heart failure, and heart attack. It belongs to BCS class III having a half-life of 12 hrs and 25% bioavailability. The purpose of the present work was to develop a press-coated, floating-pulsatile drug delivery system. The core tablet was formulated using the super-disintegrants crosprovidone and croscarmellose sodium. A press-coated tablet (barrier layer) contained the polymer carrageenan, xanthan gum, HPMC K4M, and HPMC K15M. The buoyant layer was optimized with HPMC K100M, sodium bicarbonate, and citric acid. The tablets were evaluated for physical characteristics, floating lag time, swelling index, FTIR, DSC, and in vitro and in vivo behavior. The 5% superdisintgrant showed good results. The FTIR and DSC study predicted no chemical interactions between the drug and excipients. The formulation containing xanthan gum showed drug retaining abilities, but failed to float. The tablet containing HPMC K15M showed a high swelling index. The lag time for the tablet coated with 200 mg carrageenan was 3±0.1 hrs with 99.99±1.5% drug release; with 140 mg HPMC K4M, the lag time was 3±0.1 hrs with 99.71±1.2% drug release; and with 120 mg HPMC K15M, the lag time was 3±0.2 hrs with 99.98±1.7% drug release. The release mechanism of the tablet followed the Korsmeyer-Peppas equation and a first-order release pattern. Floating and lag time behavior have shown good in vitro and in vivo correlations. Österreichische Apotheker-Verlagsgesellschaft 2014 2014-04-14 /pmc/articles/PMC4065132/ /pubmed/24959410 http://dx.doi.org/10.3797/scipharm.1301-27 Text en © Jagdale et al.; licensee Österreichische Apotheker-Verlagsgesellschaft m. b. H., Vienna, Austria. This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Jagdale, Swati C.
Suryawanshi, Vishnu M.
Pandya, Sudhir V.
Kuchekar, Bhanudas S.
Chabukswar, Aniruddha R.
Development of Press-Coated, Floating-Pulsatile Drug Delivery of Lisinopril
title Development of Press-Coated, Floating-Pulsatile Drug Delivery of Lisinopril
title_full Development of Press-Coated, Floating-Pulsatile Drug Delivery of Lisinopril
title_fullStr Development of Press-Coated, Floating-Pulsatile Drug Delivery of Lisinopril
title_full_unstemmed Development of Press-Coated, Floating-Pulsatile Drug Delivery of Lisinopril
title_short Development of Press-Coated, Floating-Pulsatile Drug Delivery of Lisinopril
title_sort development of press-coated, floating-pulsatile drug delivery of lisinopril
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4065132/
https://www.ncbi.nlm.nih.gov/pubmed/24959410
http://dx.doi.org/10.3797/scipharm.1301-27
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