Disintegration, In vitro Dissolution, and Drug Release Kinetics Profiles of k-Carrageenan-based Nutraceutical Hard-shell Capsules Containing Salicylamide

Author:

Pudjiastuti Pratiwi1,Wafiroh Siti1,Hendradi Esti2,Darmokoesoemo Handoko1,Harsini Muji1,Fauzi M. Al Rizqi Dharma1,Nahar Lutfun3,Sarker Satyajit D.3

Affiliation:

1. Department of Chemistry, Faculty of Science and Technology, Universitas Airlangga, Surabaya-60115, Indonesia

2. Department of Pharmaceutics, Faculty of Pharmacy, Universitas Airlangga, Surabaya-60115, Indonesia

3. Centre for Natural Products Discovery, School of Pharmacy and Biomolecular Sciences, Liverpool John Moores University, James Parsons Building, Byrom Street, MooresLiverpool L3 3AF, UK

Abstract

AbstractThe release of drugs from solid drug delivery materials has been studied intently in recent years. Quantitative analyses achieved from in vitro dissolution becomes easier if a zero-order mathematical model is used. Non-gelatin nutraceutical hard-shell capsules of zero size (approximately 0.7-0.8 cm) were produced from carrageenan-based natural polymers, namely carrageenan-alginate (CA) and carrageenan-starch (CS). Disintegration, dissolution and zero-order drug release kinetics of hard-shell capsules containing 100 mg of salicylamide were studied. The disintegration time of CA and CS were observed to be less than 30 min for both CA and CS. In vitro dissolution profile showed that the percentage dissolution of CA capsules was better at pH 4.5, while that of CS was poor at pH 1.2, 4.5 and 6.8. Determination of drug release kinetics profiles of carrageenan-based hardshell capsules utilized the Noyes-Whitney and Peppas-Sahlin modification rules for zero-order. The drug release from carrageenan-based capsules followed zero-order kinetics, especially at pH 6.8, and was compared to the Higuchi model. Salicylamide in CA hard-shell capsules at a pH 6.8 had a release rate constant (kH) of 2.91 %(ppm/ ppm) min-1/2, while the release rate constant of CS was 0.36 %(ppm/ppm) min-1.

Publisher

Walter de Gruyter GmbH

Subject

Materials Chemistry,General Chemistry

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