Kinetic evaluation of L-Dopa loaded WGA-grafted nanoparticles

Drug release is a critical parameter in the discipline of drug delivery for years. The determination of in vitro release kinetics of active substances from drug systems plays a critical role in predicting and managing of both efficacy and safety. Kinetics is more than a scientific goal; it is a fund...

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Main Authors: Sema Arisoy, Tansel Comoglu
Format: Article
Language:English
Published: Society of Turaz Bilim 2020-06-01
Series:Medicine Science
Subjects:
Online Access:http://www.ejmanager.com/fulltextpdf.php?mno=67069
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author Sema Arisoy
Tansel Comoglu
author_facet Sema Arisoy
Tansel Comoglu
author_sort Sema Arisoy
collection DOAJ
description Drug release is a critical parameter in the discipline of drug delivery for years. The determination of in vitro release kinetics of active substances from drug systems plays a critical role in predicting and managing of both efficacy and safety. Kinetics is more than a scientific goal; it is a fundamental quality parameter of all type of drugs. Kinetic models are developed to determine drug release from delivery systems which the released drug amount (Q) is plotted versus time; t or as a function of time Q=f (t). Kinetic models facilitate the understanding of release pattern in enabling to design an effective formulation. In this study wheat germ agglutinin (WGA) conjugated, L-Dopa loaded, poly lactic-co-glycolic acid (PLGA) nanoparticles were analyzed for determining the release pattern of L-Dopa. Higuchi, zero order, first order, Hixon Crowell and Korsmeyer-Peppas models were investigated. Hixson Crowell model was found to be the best fitted kinetic model in L-Dopa loaded nanoparticles (r2 =0.9828). [Med-Science 2020; 9(2.000): 385-8]
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spelling doaj.art-f2173e43af1f446ab5f986a546657ff02024-02-03T08:37:00ZengSociety of Turaz BilimMedicine Science2147-06342020-06-0192385810.5455/medscience.2019.08.920967069Kinetic evaluation of L-Dopa loaded WGA-grafted nanoparticlesSema Arisoy0Tansel ComogluAnkara Universty, Faculty of Pharmacy, Department of Pharmaceutical Technology, Ankara, TurkeyDrug release is a critical parameter in the discipline of drug delivery for years. The determination of in vitro release kinetics of active substances from drug systems plays a critical role in predicting and managing of both efficacy and safety. Kinetics is more than a scientific goal; it is a fundamental quality parameter of all type of drugs. Kinetic models are developed to determine drug release from delivery systems which the released drug amount (Q) is plotted versus time; t or as a function of time Q=f (t). Kinetic models facilitate the understanding of release pattern in enabling to design an effective formulation. In this study wheat germ agglutinin (WGA) conjugated, L-Dopa loaded, poly lactic-co-glycolic acid (PLGA) nanoparticles were analyzed for determining the release pattern of L-Dopa. Higuchi, zero order, first order, Hixon Crowell and Korsmeyer-Peppas models were investigated. Hixson Crowell model was found to be the best fitted kinetic model in L-Dopa loaded nanoparticles (r2 =0.9828). [Med-Science 2020; 9(2.000): 385-8]http://www.ejmanager.com/fulltextpdf.php?mno=67069kinetic evaluationfirst orderzero orderhixon-crowellkorsmeyer-pepashiguchi
spellingShingle Sema Arisoy
Tansel Comoglu
Kinetic evaluation of L-Dopa loaded WGA-grafted nanoparticles
Medicine Science
kinetic evaluation
first order
zero order
hixon-crowell
korsmeyer-pepas
higuchi
title Kinetic evaluation of L-Dopa loaded WGA-grafted nanoparticles
title_full Kinetic evaluation of L-Dopa loaded WGA-grafted nanoparticles
title_fullStr Kinetic evaluation of L-Dopa loaded WGA-grafted nanoparticles
title_full_unstemmed Kinetic evaluation of L-Dopa loaded WGA-grafted nanoparticles
title_short Kinetic evaluation of L-Dopa loaded WGA-grafted nanoparticles
title_sort kinetic evaluation of l dopa loaded wga grafted nanoparticles
topic kinetic evaluation
first order
zero order
hixon-crowell
korsmeyer-pepas
higuchi
url http://www.ejmanager.com/fulltextpdf.php?mno=67069
work_keys_str_mv AT semaarisoy kineticevaluationofldopaloadedwgagraftednanoparticles
AT tanselcomoglu kineticevaluationofldopaloadedwgagraftednanoparticles