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Mathematical Modeling of Biosensors Based on an Array of Enzyme Microreactors

This paper presents a two-dimensional-in-space mathematical model of biosensors based on an array of enzyme microreactors immobilised on a single electrode. The modeling system acts under amperometric conditions. The microreactors were modeled by particles and by strips. The model is based on the di...

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Detalles Bibliográficos
Autores principales: Baronas, Romas, Ivanauskas, Feliksas, Kulys, Juozas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Molecular Diversity Preservation International (MDPI) 2006
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3872366/
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author Baronas, Romas
Ivanauskas, Feliksas
Kulys, Juozas
author_facet Baronas, Romas
Ivanauskas, Feliksas
Kulys, Juozas
author_sort Baronas, Romas
collection PubMed
description This paper presents a two-dimensional-in-space mathematical model of biosensors based on an array of enzyme microreactors immobilised on a single electrode. The modeling system acts under amperometric conditions. The microreactors were modeled by particles and by strips. The model is based on the diffusion equations containing a non-linear term related to the Michaelis-Menten kinetics of the enzymatic reaction. The model involves three regions: an array of enzyme microreactors where enzyme reaction as well as mass transport by diffusion takes place, a diffusion limiting region where only the diffusion takes place, and a convective region, where the analyte concentration is maintained constant. Using computer simulation, the influence of the geometry of the microreactors and of the diffusion region on the biosensor response was investigated. The digital simulation was carried out using the finite difference technique.
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spelling pubmed-38723662013-12-26 Mathematical Modeling of Biosensors Based on an Array of Enzyme Microreactors Baronas, Romas Ivanauskas, Feliksas Kulys, Juozas Sensors (Basel) Full Research Paper This paper presents a two-dimensional-in-space mathematical model of biosensors based on an array of enzyme microreactors immobilised on a single electrode. The modeling system acts under amperometric conditions. The microreactors were modeled by particles and by strips. The model is based on the diffusion equations containing a non-linear term related to the Michaelis-Menten kinetics of the enzymatic reaction. The model involves three regions: an array of enzyme microreactors where enzyme reaction as well as mass transport by diffusion takes place, a diffusion limiting region where only the diffusion takes place, and a convective region, where the analyte concentration is maintained constant. Using computer simulation, the influence of the geometry of the microreactors and of the diffusion region on the biosensor response was investigated. The digital simulation was carried out using the finite difference technique. Molecular Diversity Preservation International (MDPI) 2006-04-07 /pmc/articles/PMC3872366/ Text en © 2006 by MDPI (http://www.mdpi.org). Reproduction is permitted for non-commercial purposes.
spellingShingle Full Research Paper
Baronas, Romas
Ivanauskas, Feliksas
Kulys, Juozas
Mathematical Modeling of Biosensors Based on an Array of Enzyme Microreactors
title Mathematical Modeling of Biosensors Based on an Array of Enzyme Microreactors
title_full Mathematical Modeling of Biosensors Based on an Array of Enzyme Microreactors
title_fullStr Mathematical Modeling of Biosensors Based on an Array of Enzyme Microreactors
title_full_unstemmed Mathematical Modeling of Biosensors Based on an Array of Enzyme Microreactors
title_short Mathematical Modeling of Biosensors Based on an Array of Enzyme Microreactors
title_sort mathematical modeling of biosensors based on an array of enzyme microreactors
topic Full Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3872366/
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AT ivanauskasfeliksas mathematicalmodelingofbiosensorsbasedonanarrayofenzymemicroreactors
AT kulysjuozas mathematicalmodelingofbiosensorsbasedonanarrayofenzymemicroreactors