Drug Mass Transfer Mechanism, Thermodynamics, and In Vitro Release Kinetics of Antioxidant-encapsulated Zeolite Microparticles as a Drug Carrier System

The aim of the present study was to develop a new vitamin E-zeolite drug carrier system, and investigate the mass transfer mechanism of the antioxidant encapsulation and release on/from the mineral matrix by thermodynamic and kinetics sorption/desorption experiments and mathematical modelling of the...

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Main Authors: Z. Lyubenova Yaneva, N. Valkanova Georgieva, L. Lyubomirova Bekirska, S. Lavrova
Format: Article
Language:English
Published: Croatian Society of Chemical Engineers 2018-10-01
Series:Chemical and Biochemical Engineering Quarterly
Subjects:
Online Access:http://silverstripe.fkit.hr/cabeq/assets/Uploads/01-3-2018.pdf
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spelling doaj-db6b38a02f554df1ab3e89aac6a719dd2020-11-25T00:36:13ZengCroatian Society of Chemical EngineersChemical and Biochemical Engineering Quarterly0352-95681846-51532018-10-0132328129810.15255/CABEQ.2018.1319Drug Mass Transfer Mechanism, Thermodynamics, and In Vitro Release Kinetics of Antioxidant-encapsulated Zeolite Microparticles as a Drug Carrier SystemZ. Lyubenova Yaneva0N. Valkanova Georgieva1L. Lyubomirova Bekirska2S. Lavrova3Chemistry Unit, Department of Pharmacology, Animal Physiology and Physiological Chemistry, Faculty of Veterinary Medicine, Trakia University, Students Campus, 6000 Stara Zagora, BulgariaChemistry Unit, Department of Pharmacology, Animal Physiology and Physiological Chemistry, Faculty of Veterinary Medicine, Trakia University, Students Campus, 6000 Stara Zagora, BulgariaChemistry Unit, Department of Pharmacology, Animal Physiology and Physiological Chemistry, Faculty of Veterinary Medicine, Trakia University, Students Campus, 6000 Stara Zagora, BulgariaFaculty of Chemical System Engineering, University of Chemical Technology and Metallurgy, 8, Kliment Ohridski Blvd., Sofia, BulgariaThe aim of the present study was to develop a new vitamin E-zeolite drug carrier system, and investigate the mass transfer mechanism of the antioxidant encapsulation and release on/from the mineral matrix by thermodynamic and kinetics sorption/desorption experiments and mathematical modelling of the experimental data. The surface, morphological and spectral characteristics of the vitamin and the zeolite were determined by Boehm titration, SEM, FTIR and UV/Vis spectrophotometric analyses. Intraparticle diffusion was not the only rate-limiting mechanism, as the mixed-order kinetics model gave the highest regression coefficient (R2) and lowest SSE, MSE, RMSE, and AICC values. The thermodynamic study confirmed the endothermic nature of the spontaneous encapsulation process and increased degrees of randomness at the solid-liquid interface. The in vitro release results were best modelled by the zero-order and sigmoidal models. The results obtained are essential for the development of innovative vitamin E-carrier systems for application in human and veterinary medicine.http://silverstripe.fkit.hr/cabeq/assets/Uploads/01-3-2018.pdfvitamin Ezeolitedrug encapsulation/releasekineticsthermodynamicsmathematical modelling
collection DOAJ
language English
format Article
sources DOAJ
author Z. Lyubenova Yaneva
N. Valkanova Georgieva
L. Lyubomirova Bekirska
S. Lavrova
spellingShingle Z. Lyubenova Yaneva
N. Valkanova Georgieva
L. Lyubomirova Bekirska
S. Lavrova
Drug Mass Transfer Mechanism, Thermodynamics, and In Vitro Release Kinetics of Antioxidant-encapsulated Zeolite Microparticles as a Drug Carrier System
Chemical and Biochemical Engineering Quarterly
vitamin E
zeolite
drug encapsulation/release
kinetics
thermodynamics
mathematical modelling
author_facet Z. Lyubenova Yaneva
N. Valkanova Georgieva
L. Lyubomirova Bekirska
S. Lavrova
author_sort Z. Lyubenova Yaneva
title Drug Mass Transfer Mechanism, Thermodynamics, and In Vitro Release Kinetics of Antioxidant-encapsulated Zeolite Microparticles as a Drug Carrier System
title_short Drug Mass Transfer Mechanism, Thermodynamics, and In Vitro Release Kinetics of Antioxidant-encapsulated Zeolite Microparticles as a Drug Carrier System
title_full Drug Mass Transfer Mechanism, Thermodynamics, and In Vitro Release Kinetics of Antioxidant-encapsulated Zeolite Microparticles as a Drug Carrier System
title_fullStr Drug Mass Transfer Mechanism, Thermodynamics, and In Vitro Release Kinetics of Antioxidant-encapsulated Zeolite Microparticles as a Drug Carrier System
title_full_unstemmed Drug Mass Transfer Mechanism, Thermodynamics, and In Vitro Release Kinetics of Antioxidant-encapsulated Zeolite Microparticles as a Drug Carrier System
title_sort drug mass transfer mechanism, thermodynamics, and in vitro release kinetics of antioxidant-encapsulated zeolite microparticles as a drug carrier system
publisher Croatian Society of Chemical Engineers
series Chemical and Biochemical Engineering Quarterly
issn 0352-9568
1846-5153
publishDate 2018-10-01
description The aim of the present study was to develop a new vitamin E-zeolite drug carrier system, and investigate the mass transfer mechanism of the antioxidant encapsulation and release on/from the mineral matrix by thermodynamic and kinetics sorption/desorption experiments and mathematical modelling of the experimental data. The surface, morphological and spectral characteristics of the vitamin and the zeolite were determined by Boehm titration, SEM, FTIR and UV/Vis spectrophotometric analyses. Intraparticle diffusion was not the only rate-limiting mechanism, as the mixed-order kinetics model gave the highest regression coefficient (R2) and lowest SSE, MSE, RMSE, and AICC values. The thermodynamic study confirmed the endothermic nature of the spontaneous encapsulation process and increased degrees of randomness at the solid-liquid interface. The in vitro release results were best modelled by the zero-order and sigmoidal models. The results obtained are essential for the development of innovative vitamin E-carrier systems for application in human and veterinary medicine.
topic vitamin E
zeolite
drug encapsulation/release
kinetics
thermodynamics
mathematical modelling
url http://silverstripe.fkit.hr/cabeq/assets/Uploads/01-3-2018.pdf
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AT nvalkanovageorgieva drugmasstransfermechanismthermodynamicsandinvitroreleasekineticsofantioxidantencapsulatedzeolitemicroparticlesasadrugcarriersystem
AT llyubomirovabekirska drugmasstransfermechanismthermodynamicsandinvitroreleasekineticsofantioxidantencapsulatedzeolitemicroparticlesasadrugcarriersystem
AT slavrova drugmasstransfermechanismthermodynamicsandinvitroreleasekineticsofantioxidantencapsulatedzeolitemicroparticlesasadrugcarriersystem
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