Influence of cellulose derivatives and natural polymers on in vitro release kinetics of metoprolol succinate from extended release matrix tablets

In the present investigation, extended release tablets of metoprolol succinate were developed using cellulose derivatives and natural gums as matrix formers and were evaluated for its extended release characteristics. The optimized formulation (F7) was obtained using cellulose derivatives in the rat...

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Autores principales: Sunil, R., Somagoni, Jagan M., Panakanti, Pavan K., Ega, Chandra M., Yamsani, Madhusudan R.
Formato: Articulo
Lenguaje:Inglés
Publicado: 2011
Materias:
Acceso en línea:http://sedici.unlp.edu.ar/handle/10915/8262
http://www.latamjpharm.org/resumenes/30/6/LAJOP_30_6_1_4.pdf
Aporte de:
id I19-R120-10915-8262
record_format dspace
institution Universidad Nacional de La Plata
institution_str I-19
repository_str R-120
collection SEDICI (UNLP)
language Inglés
topic Farmacia
Celulosa
hydroxypropyl methylcellulose; metoprolol succinate; sodium CMC; sustained release matrix tablets
Polímeros
Cinética
spellingShingle Farmacia
Celulosa
hydroxypropyl methylcellulose; metoprolol succinate; sodium CMC; sustained release matrix tablets
Polímeros
Cinética
Sunil, R.
Somagoni, Jagan M.
Panakanti, Pavan K.
Ega, Chandra M.
Yamsani, Madhusudan R.
Influence of cellulose derivatives and natural polymers on in vitro release kinetics of metoprolol succinate from extended release matrix tablets
topic_facet Farmacia
Celulosa
hydroxypropyl methylcellulose; metoprolol succinate; sodium CMC; sustained release matrix tablets
Polímeros
Cinética
description In the present investigation, extended release tablets of metoprolol succinate were developed using cellulose derivatives and natural gums as matrix formers and were evaluated for its extended release characteristics. The optimized formulation (F7) was obtained using cellulose derivatives in the ratio of 1:0.5:1drug, HPMC K 100M and Na CMC, respectively. Prepared tablets were subjected to all the Pharmacopeial quality tests and found to be in the limits. The in vitro release studies of prepared matrix tablets with both the polymers were also studied. The kinetic treatment illustrate that the optimized formulation (F7) followed zero order kinetics with release exponent (n) 0.82 and showed good stability as per ICH guidelines. FT-IR and DSC studies indicated no chemical interaction between the drug and excipients. Oral extended release tablets of metoprolol succinate could be successfully prepared using an appropriate combination of cellulose polymers when compared with natural gums
format Articulo
Articulo
author Sunil, R.
Somagoni, Jagan M.
Panakanti, Pavan K.
Ega, Chandra M.
Yamsani, Madhusudan R.
author_facet Sunil, R.
Somagoni, Jagan M.
Panakanti, Pavan K.
Ega, Chandra M.
Yamsani, Madhusudan R.
author_sort Sunil, R.
title Influence of cellulose derivatives and natural polymers on in vitro release kinetics of metoprolol succinate from extended release matrix tablets
title_short Influence of cellulose derivatives and natural polymers on in vitro release kinetics of metoprolol succinate from extended release matrix tablets
title_full Influence of cellulose derivatives and natural polymers on in vitro release kinetics of metoprolol succinate from extended release matrix tablets
title_fullStr Influence of cellulose derivatives and natural polymers on in vitro release kinetics of metoprolol succinate from extended release matrix tablets
title_full_unstemmed Influence of cellulose derivatives and natural polymers on in vitro release kinetics of metoprolol succinate from extended release matrix tablets
title_sort influence of cellulose derivatives and natural polymers on in vitro release kinetics of metoprolol succinate from extended release matrix tablets
publishDate 2011
url http://sedici.unlp.edu.ar/handle/10915/8262
http://www.latamjpharm.org/resumenes/30/6/LAJOP_30_6_1_4.pdf
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