Cargando…

Evaluation of Three Chitin Metal Silicate Co-Precipitates as a Potential Multifunctional Single Excipient in Tablet Formulations

The performance of the novel chitin metal silicate (CMS) co-precipitates as a single multifunctional excipient in tablet formulation using direct compression and wet granulation methods is evaluated. The neutral, acidic, and basic drugs Spironolactone (SPL), ibuprofen (IBU) and metronidazole (MET),...

Descripción completa

Detalles Bibliográficos
Autores principales: Hamid, Rana Al-Shaikh, Al-Akayleh, Faisal, Shubair, Mohammad, Rashid, Iyad, Remawi, Mayyas Al, Badwan, Adnan
Formato: Texto
Lenguaje:English
Publicado: Molecular Diversity Preservation International 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2885085/
https://www.ncbi.nlm.nih.gov/pubmed/20559493
http://dx.doi.org/10.3390/md8051699
_version_ 1782182351417114624
author Hamid, Rana Al-Shaikh
Al-Akayleh, Faisal
Shubair, Mohammad
Rashid, Iyad
Remawi, Mayyas Al
Badwan, Adnan
author_facet Hamid, Rana Al-Shaikh
Al-Akayleh, Faisal
Shubair, Mohammad
Rashid, Iyad
Remawi, Mayyas Al
Badwan, Adnan
author_sort Hamid, Rana Al-Shaikh
collection PubMed
description The performance of the novel chitin metal silicate (CMS) co-precipitates as a single multifunctional excipient in tablet formulation using direct compression and wet granulation methods is evaluated. The neutral, acidic, and basic drugs Spironolactone (SPL), ibuprofen (IBU) and metronidazole (MET), respectively, were used as model drugs. Commercial Aldactone(®), Fleximex(®) and Dumazole(®) tablets containing SPL, IBU and MET, respectively, and tablets made using Avicel(®) 200, were used in the study for comparison purposes. Tablets of acceptable crushing strength (>40 N) were obtained using CMS. The friability values for all tablets were well below the maximum 1% USP tolerance limit. CMS produced superdisintegrating tablets (disintegration time < 1 min) with the three model drugs. Regarding the dissolution rate, the sequence was as follow: CMS > Fleximex(®) > Avicel(®) 200, CMS > Avicel(®) 200 > Dumazole(®) and Aldactone(®) > Avicel(®) 200 > CMS for IBU, MET and SPL, respectively. Compressional properties of formulations were analyzed using density measurements and the compression Kawakita equation as assessment parameters. On the basis of DSC results, CMS co precipitates were found to be compatible with the tested drugs. Conclusively, the CMS co-precipitates have the potential to be used as filler, binder, and superdisintegrant, all-in-one, in the design of tablets by the direct compression as well as wet granulation methods.
format Text
id pubmed-2885085
institution National Center for Biotechnology Information
language English
publishDate 2010
publisher Molecular Diversity Preservation International
record_format MEDLINE/PubMed
spelling pubmed-28850852010-06-17 Evaluation of Three Chitin Metal Silicate Co-Precipitates as a Potential Multifunctional Single Excipient in Tablet Formulations Hamid, Rana Al-Shaikh Al-Akayleh, Faisal Shubair, Mohammad Rashid, Iyad Remawi, Mayyas Al Badwan, Adnan Mar Drugs Article The performance of the novel chitin metal silicate (CMS) co-precipitates as a single multifunctional excipient in tablet formulation using direct compression and wet granulation methods is evaluated. The neutral, acidic, and basic drugs Spironolactone (SPL), ibuprofen (IBU) and metronidazole (MET), respectively, were used as model drugs. Commercial Aldactone(®), Fleximex(®) and Dumazole(®) tablets containing SPL, IBU and MET, respectively, and tablets made using Avicel(®) 200, were used in the study for comparison purposes. Tablets of acceptable crushing strength (>40 N) were obtained using CMS. The friability values for all tablets were well below the maximum 1% USP tolerance limit. CMS produced superdisintegrating tablets (disintegration time < 1 min) with the three model drugs. Regarding the dissolution rate, the sequence was as follow: CMS > Fleximex(®) > Avicel(®) 200, CMS > Avicel(®) 200 > Dumazole(®) and Aldactone(®) > Avicel(®) 200 > CMS for IBU, MET and SPL, respectively. Compressional properties of formulations were analyzed using density measurements and the compression Kawakita equation as assessment parameters. On the basis of DSC results, CMS co precipitates were found to be compatible with the tested drugs. Conclusively, the CMS co-precipitates have the potential to be used as filler, binder, and superdisintegrant, all-in-one, in the design of tablets by the direct compression as well as wet granulation methods. Molecular Diversity Preservation International 2010-05-25 /pmc/articles/PMC2885085/ /pubmed/20559493 http://dx.doi.org/10.3390/md8051699 Text en © 2010 by the authors; licensee Molecular Diversity Preservation International, Basel, Switzerland http://creativecommons.org/licenses/by/3.0 This article is an open-access article distributed under the terms and conditions of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/3.0/).
spellingShingle Article
Hamid, Rana Al-Shaikh
Al-Akayleh, Faisal
Shubair, Mohammad
Rashid, Iyad
Remawi, Mayyas Al
Badwan, Adnan
Evaluation of Three Chitin Metal Silicate Co-Precipitates as a Potential Multifunctional Single Excipient in Tablet Formulations
title Evaluation of Three Chitin Metal Silicate Co-Precipitates as a Potential Multifunctional Single Excipient in Tablet Formulations
title_full Evaluation of Three Chitin Metal Silicate Co-Precipitates as a Potential Multifunctional Single Excipient in Tablet Formulations
title_fullStr Evaluation of Three Chitin Metal Silicate Co-Precipitates as a Potential Multifunctional Single Excipient in Tablet Formulations
title_full_unstemmed Evaluation of Three Chitin Metal Silicate Co-Precipitates as a Potential Multifunctional Single Excipient in Tablet Formulations
title_short Evaluation of Three Chitin Metal Silicate Co-Precipitates as a Potential Multifunctional Single Excipient in Tablet Formulations
title_sort evaluation of three chitin metal silicate co-precipitates as a potential multifunctional single excipient in tablet formulations
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2885085/
https://www.ncbi.nlm.nih.gov/pubmed/20559493
http://dx.doi.org/10.3390/md8051699
work_keys_str_mv AT hamidranaalshaikh evaluationofthreechitinmetalsilicatecoprecipitatesasapotentialmultifunctionalsingleexcipientintabletformulations
AT alakaylehfaisal evaluationofthreechitinmetalsilicatecoprecipitatesasapotentialmultifunctionalsingleexcipientintabletformulations
AT shubairmohammad evaluationofthreechitinmetalsilicatecoprecipitatesasapotentialmultifunctionalsingleexcipientintabletformulations
AT rashidiyad evaluationofthreechitinmetalsilicatecoprecipitatesasapotentialmultifunctionalsingleexcipientintabletformulations
AT remawimayyasal evaluationofthreechitinmetalsilicatecoprecipitatesasapotentialmultifunctionalsingleexcipientintabletformulations
AT badwanadnan evaluationofthreechitinmetalsilicatecoprecipitatesasapotentialmultifunctionalsingleexcipientintabletformulations