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  •   Ιδρυματικό Αποθετήριο Πανεπιστημίου Θεσσαλίας
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  • Προβολή τεκμηρίου
  •   Ιδρυματικό Αποθετήριο Πανεπιστημίου Θεσσαλίας
  • Επιστημονικές Δημοσιεύσεις Μελών ΠΘ (ΕΔΠΘ)
  • Δημοσιεύσεις σε περιοδικά, συνέδρια, κεφάλαια βιβλίων κλπ.
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Ιδρυματικό Αποθετήριο Πανεπιστημίου Θεσσαλίας
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Investigation of the drug release time from the biodegrading coating of an everolimus eluting stent

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Συγγραφέας
Pleouras D.S., Karanasiou G.S., Loukas V.S., Semertzioglou A., Moulas A.N., Fotiadis D.I.
Ημερομηνία
2021
Γλώσσα
en
DOI
10.1109/EMBC46164.2021.9629813
Λέξη-κλειδί
Artificial organs
Computational geometry
Controlled drug delivery
Stents
Targeted drug delivery
Case-studies
Computational modelling
Controlled drug release
Drug release
Drug-eluting stents
Everolimus
In-silico
Poly lactic-co-glycolic acid
Rapid release
Release time
Coatings
everolimus
drug eluting stent
drug release
stent
Drug Liberation
Drug-Eluting Stents
Everolimus
Stents
Institute of Electrical and Electronics Engineers Inc.
Εμφάνιση Μεταδεδομένων
Επιτομή
This case-study examines the release time of the everolimus drug from an experimental biodegrading coating of a Rontis corp. drug eluting stent (DES). The controlled drug release is achieved by the degradation of the coating, which consists of a mixture of polylactic co-glycolic acid (PLGA) and everolimus (55:45). In our analysis, we used the outcome of another study, which contains the geometry of an in-silico deployed Rontis corp. stent in a 3D reconstructed coney arterial segment. Using this geometry as input, the everolimus release was simulated using a computational model that includes: i) modeling of the blood flow dynamics, ii) modeling of PLGA degradation, and iii) modeling of the everolimus advection and diffusion towards both the lumen and the arterial wall. The results show the rapid release of everolimus. This is justified due to the high porosity of the coating, which is caused by the initial high concentration of everolimus in the coating.Clinical Relevance - The methodology presented in this work is an additional step towards predicting accurately drug release from DES. Also, the results of our work prove that high drug concentration in the coating causes its rapid release, which could be used as input in the design of new DES. © 2021 IEEE.
URI
http://hdl.handle.net/11615/78266
Collections
  • Δημοσιεύσεις σε περιοδικά, συνέδρια, κεφάλαια βιβλίων κλπ. [19743]

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