Title of article :
Ion-exchange, an Approach to Prepare an Oral Floating Drug Delivery System for Diclofenac
Author/Authors :
Kouchak, Maryam Department of Pharmaceutics, School of Pharmacy, Ahwaz Jundishapur University of Medical Sciences, Ahwaz , Atyabi, Fatemeh Department of Pharmaceutics, School of Pharmacy, Tehran University of Medical Sciences, Tehran
Abstract :
Using ion-exchange resins, a multiple-unit type of oral floating dosage system has been
prepared to prolong gastric emptying time of dosage form. The system is composed of beads
of drug-resin complex, which are loaded with bicarbonate ions and coated with a hydrophobic
polymer. The system is so designed that when the beads reach the stomach, chloride ions are
exchanged with bicarbonate and drug ions. The generated CO2 is entrapped in the polymeric
coated resins and causes the beads to float.
In this study, Amberlite-IRA900 was loaded with diclofenac and bicarbonate ions, using a
batch method. The beads were encapsulated with a hydrophobic polymer (ethyl cellulose or
Eudragit RS-100). To find an appropriate formulation, the factors affecting the drug loading,
floating ability and drug release were investigated.
Based on the result obtained, maximum loading efficiency was attained at 3 h, using an
aqueous diclofenac solution and resin beads measuring 430 μm in diameter. Drug release from
both uncoated complexes of diclofenac-resin, and diclofenac-bicarbonate-resin occurred via
particle-diffusion. The ethyl cellulose-coated beads have a desirable floating capability in
comparison with the Eudragit RS-100 coated beads on HCl 0.1M solution containing 0.02%
polysorbate 80.
Keywords :
Ion exchange resins , ystem , Floating s , Diclofenac sodium , Bicarbonate sodium , ethyl cellulose , Eudragit RS-100
Journal title :
Astroparticle Physics