Wet granulation fine particle ethylcellulose tablets: Effect of production variables and mathematical modeling of drug release

Journal Title: The AAPS Journal - Year 2003, Vol 5, Issue 2

Abstract

In the present study, the applicability of fine particle ethylcellulose (FPEC) to produce matrix tablets by a wet granulation technique was evaluated. The effect of various formulation and process variables, such as FPEC content, hardness of the tablet, and solubility of the drug, on the release of drug from these tablets was examined. Tablets were prepared by wet granulation of drug and FPEC in an appropriate mass ratio. Theophylline, caffeine, and dyphylline were selected as nonionizable model drugs with solubilities from 8.3 to 330 mg/mL at 25°C. Ibuprofen, phenylpropanolamine hydrochloride, and pseudoephedrine hydrochloride were selected as ionizable drugs with solubilities from 0.1 to 2000 mg/mL at 25°C. Drug release studies were conducted in 37°C water with UV detection. As the FPEC content and the hardness of the tablets increased, the release rate of the drug decreased. The drug release rate increased with an increase in the solubility of the drug. Model equations, intended to elucidate the drug release mechanism, were fitted to the release data. Parameters were generated and data presented by SAS software. The Akaike Information Criterion was also considered to ascertain the best-fit equation. Fickian diffusion and polymer relaxation were the release mechanisms for nonionizable and ionizable drugs.

Authors and Affiliations

Anjali M. Agrawal, Steven H. Neau, Peter L. Bonate

Keywords

Related Articles

Evaluation of Methods for Estimating Time to Steady State with Examples from Phase 1 Studies

An overview is provided of the methodologies used in determining the time to steady state for Phase 1 multiple dose studies. These methods include NOSTASOT (no-statistical-significance-of-trend), Helmert contrasts, splin...

Applications of In Vitro–In Vivo Correlations in Generic Drug Development: Case Studies

In vitro–in vivo correlation (IVIVC) is a predictive mathematical model describing the relationship between an in vitro property and a relevant in vivo response. The main objective of an IVIVC is to serve as a su...

The Poorly Membrane Permeable Antipsychotic Drugs Amisulpride and Sulpiride Are Substrates of the Organic Cation Transporters from the SLC22 Family

The online version of this article (doi:10.1208/s12248-014-9649-9) contains supplementary material, which is available to authorized users.

The joint food and agriculture organization of the united nations/world health organization expert committee on food additives and its role in the evaluation of the safety of veterinary drug residues in foods

The Food and Agriculture Organization of the United Nations (FAO) and the World Health Organization (WHO) recommended the evaluation of food additives at the international level through the establishment of an expert com...

Download PDF file
  • EP ID EP681973
  • DOI  10.1208/ps050213
  • Views 98
  • Downloads 0

How To Cite

Anjali M. Agrawal, Steven H. Neau, Peter L. Bonate (2003). Wet granulation fine particle ethylcellulose tablets: Effect of production variables and mathematical modeling of drug release. The AAPS Journal, 5(2), -. https://europub.co.uk/articles/-A-681973