The effect of dissolution medium, rotation speed and compaction pressure on the intrinsic dissolution rate of amlodipine besylate, using the rotating disk method

The aim of this study was to evaluate the effect of dissolution medium, rotation speed and compaction pressure on the intrinsic dissolution rate (IDR) of the antihypertensive drug amlodipine besylate, using the rotating disk method. Accordingly, a fractional factorial design (33-1) was used, employi...

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Main Authors: Leandro Giorgetti, Michele Georges Issa, Humberto Gomes Ferraz
Format: Article
Language:English
Published: Universidade de São Paulo 2014-09-01
Series:Brazilian Journal of Pharmaceutical Sciences
Subjects:
Online Access:http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1984-82502014000300513&lng=en&tlng=en
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spelling doaj-b05372b4c08d4b63b063d7249f2c17c72020-11-25T00:19:13ZengUniversidade de São PauloBrazilian Journal of Pharmaceutical Sciences2175-97902014-09-0150351352010.1590/S1984-82502014000300009S1984-82502014000300513The effect of dissolution medium, rotation speed and compaction pressure on the intrinsic dissolution rate of amlodipine besylate, using the rotating disk methodLeandro GiorgettiMichele Georges IssaHumberto Gomes FerrazThe aim of this study was to evaluate the effect of dissolution medium, rotation speed and compaction pressure on the intrinsic dissolution rate (IDR) of the antihypertensive drug amlodipine besylate, using the rotating disk method. Accordingly, a fractional factorial design (33-1) was used, employing dissolution media (water, phosphate buffer pH 6.8 and HCl 0.1 M), rotation speed (50, 75 and 100 rpm), and compaction pressure (1000, 1500 and 2000 psi) as independent variables. The assays were randomized and statistically compared using the Statistica(r) 11 software program. Significance testing (ANOVA) indicated that the dissolution medium had a considerable impact on the IDR of amlodipine besylate. Analysis of the linear and quadratic components of the variables led to the proposition of a mathematical model that describes the IDR as a function of the parameters studied. Conversely, the levels of compaction pressure and rotation speed employed during experimental planning were less relevant, especially when the assay was conducted in the HCl 0.1 M medium.http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1984-82502014000300513&lng=en&tlng=enBesilato de anlodipino/dissolução intrínsecaSistema de classificação biofarmacêuticaFármacos/delineamento experimentalFármacos/anti-hipertensivos/ Besilato de anlodipino
collection DOAJ
language English
format Article
sources DOAJ
author Leandro Giorgetti
Michele Georges Issa
Humberto Gomes Ferraz
spellingShingle Leandro Giorgetti
Michele Georges Issa
Humberto Gomes Ferraz
The effect of dissolution medium, rotation speed and compaction pressure on the intrinsic dissolution rate of amlodipine besylate, using the rotating disk method
Brazilian Journal of Pharmaceutical Sciences
Besilato de anlodipino/dissolução intrínseca
Sistema de classificação biofarmacêutica
Fármacos/delineamento experimental
Fármacos/anti-hipertensivos/ Besilato de anlodipino
author_facet Leandro Giorgetti
Michele Georges Issa
Humberto Gomes Ferraz
author_sort Leandro Giorgetti
title The effect of dissolution medium, rotation speed and compaction pressure on the intrinsic dissolution rate of amlodipine besylate, using the rotating disk method
title_short The effect of dissolution medium, rotation speed and compaction pressure on the intrinsic dissolution rate of amlodipine besylate, using the rotating disk method
title_full The effect of dissolution medium, rotation speed and compaction pressure on the intrinsic dissolution rate of amlodipine besylate, using the rotating disk method
title_fullStr The effect of dissolution medium, rotation speed and compaction pressure on the intrinsic dissolution rate of amlodipine besylate, using the rotating disk method
title_full_unstemmed The effect of dissolution medium, rotation speed and compaction pressure on the intrinsic dissolution rate of amlodipine besylate, using the rotating disk method
title_sort effect of dissolution medium, rotation speed and compaction pressure on the intrinsic dissolution rate of amlodipine besylate, using the rotating disk method
publisher Universidade de São Paulo
series Brazilian Journal of Pharmaceutical Sciences
issn 2175-9790
publishDate 2014-09-01
description The aim of this study was to evaluate the effect of dissolution medium, rotation speed and compaction pressure on the intrinsic dissolution rate (IDR) of the antihypertensive drug amlodipine besylate, using the rotating disk method. Accordingly, a fractional factorial design (33-1) was used, employing dissolution media (water, phosphate buffer pH 6.8 and HCl 0.1 M), rotation speed (50, 75 and 100 rpm), and compaction pressure (1000, 1500 and 2000 psi) as independent variables. The assays were randomized and statistically compared using the Statistica(r) 11 software program. Significance testing (ANOVA) indicated that the dissolution medium had a considerable impact on the IDR of amlodipine besylate. Analysis of the linear and quadratic components of the variables led to the proposition of a mathematical model that describes the IDR as a function of the parameters studied. Conversely, the levels of compaction pressure and rotation speed employed during experimental planning were less relevant, especially when the assay was conducted in the HCl 0.1 M medium.
topic Besilato de anlodipino/dissolução intrínseca
Sistema de classificação biofarmacêutica
Fármacos/delineamento experimental
Fármacos/anti-hipertensivos/ Besilato de anlodipino
url http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1984-82502014000300513&lng=en&tlng=en
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