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Two Dimensional Drug Diffusion between Nanoparticles and Fractal Tumors

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Autor
Samioti S.E., Karamanos K., Tsiantis A., Papathanasiou A., Sarris I.
Fecha
2017
Language
en
DOI
10.1088/1742-6596/931/1/012034
Materia
Diffusion
Diseases
Entropy
Finite element method
Iterative methods
Medical applications
Medical nanotechnology
Nanoparticles
Tumors
Delivery methods
Diffusion mechanisms
Drug concentration
Entropy production
Fractal curves
High-order finite elements
Irregular boundary
Prefractal generation
Fractals
Institute of Physics Publishing
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Resumen
Drug delivery methods based on nanoparticles are some of the most promising medical applications in nanotechnology to treat cancer. It is observed that drug released by nanoparticles to the cancer tumors may be driven by diffusion. A fractal tumor boundary of triangular Von Koch shape is considered here and the diffusion mechanism is studied for different drug concentrations and increased fractality. A high order Finite Elements method based on the Fenics library is incorporated in fine meshes to fully resolve these irregular boundaries. Drug concentration, its transfer rates and entropy production are calculated in an up to forth order fractal iteration boundaries. We observed that diffusion rate diminishes for successive prefractal generations. Also, the entropy production around the system changes greatly as the order of the fractal curve increases. Results indicate with precision where the active sites are, in which most of the diffusion takes place and thus drug arrives to the tumor. © Published under licence by IOP Publishing Ltd.
URI
http://hdl.handle.net/11615/78764
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  • Δημοσιεύσεις σε περιοδικά, συνέδρια, κεφάλαια βιβλίων κλπ. [19735]
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