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Chemically Modified Biomimetic Carbon-Coated Iron Nanoparticles for Stent Coatings: In Vitro Cytocompatibility and In Vivo Structural Changes in Human Atherosclerotic Plaques

Atherosclerosis, a systematic degenerative disease related to the buildup of plaques in human vessels, remains the major cause of morbidity in the field of cardiovascular health problems, which are the number one cause of death globally. Novel atheroprotective HDL-mimicking chemically modified carbo...

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Autores principales: Akhmedov, Shamil, Afanasyev, Sergey, Trusova, Marina, Postnikov, Pavel, Rogovskaya, Yulia, Grakova, Elena, Kopeva, Kristina, Carreon Paz, Rosa Karen, Balakin, Sascha, Wiesmann, Hans-Peter, Opitz, Joerg, Kruppke, Benjamin, Beshchasna, Natalia, Popov, Sergey
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8301308/
https://www.ncbi.nlm.nih.gov/pubmed/34356866
http://dx.doi.org/10.3390/biomedicines9070802
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author Akhmedov, Shamil
Afanasyev, Sergey
Trusova, Marina
Postnikov, Pavel
Rogovskaya, Yulia
Grakova, Elena
Kopeva, Kristina
Carreon Paz, Rosa Karen
Balakin, Sascha
Wiesmann, Hans-Peter
Opitz, Joerg
Kruppke, Benjamin
Beshchasna, Natalia
Popov, Sergey
author_facet Akhmedov, Shamil
Afanasyev, Sergey
Trusova, Marina
Postnikov, Pavel
Rogovskaya, Yulia
Grakova, Elena
Kopeva, Kristina
Carreon Paz, Rosa Karen
Balakin, Sascha
Wiesmann, Hans-Peter
Opitz, Joerg
Kruppke, Benjamin
Beshchasna, Natalia
Popov, Sergey
author_sort Akhmedov, Shamil
collection PubMed
description Atherosclerosis, a systematic degenerative disease related to the buildup of plaques in human vessels, remains the major cause of morbidity in the field of cardiovascular health problems, which are the number one cause of death globally. Novel atheroprotective HDL-mimicking chemically modified carbon-coated iron nanoparticles (Fe@C NPs) were produced by gas-phase synthesis and modified with organic functional groups of a lipophilic nature. Modified and non-modified Fe@C NPs, immobilized with polycaprolactone on stainless steel, showed high cytocompatibility in human endothelial cell culture. Furthermore, after ex vivo treatment of native atherosclerotic plaques obtained during open carotid endarterectomy surgery, Fe@C NPs penetrated the inner structures and caused structural changes of atherosclerotic plaques, depending on the period of implantation in Wistar rats, serving as a natural bioreactor. The high biocompatibility of the Fe@C NPs shows great potential in the treatment of atherosclerosis disease as an active substance of stent coatings to prevent restenosis and the formation of atherosclerotic plaques.
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spelling pubmed-83013082021-07-24 Chemically Modified Biomimetic Carbon-Coated Iron Nanoparticles for Stent Coatings: In Vitro Cytocompatibility and In Vivo Structural Changes in Human Atherosclerotic Plaques Akhmedov, Shamil Afanasyev, Sergey Trusova, Marina Postnikov, Pavel Rogovskaya, Yulia Grakova, Elena Kopeva, Kristina Carreon Paz, Rosa Karen Balakin, Sascha Wiesmann, Hans-Peter Opitz, Joerg Kruppke, Benjamin Beshchasna, Natalia Popov, Sergey Biomedicines Article Atherosclerosis, a systematic degenerative disease related to the buildup of plaques in human vessels, remains the major cause of morbidity in the field of cardiovascular health problems, which are the number one cause of death globally. Novel atheroprotective HDL-mimicking chemically modified carbon-coated iron nanoparticles (Fe@C NPs) were produced by gas-phase synthesis and modified with organic functional groups of a lipophilic nature. Modified and non-modified Fe@C NPs, immobilized with polycaprolactone on stainless steel, showed high cytocompatibility in human endothelial cell culture. Furthermore, after ex vivo treatment of native atherosclerotic plaques obtained during open carotid endarterectomy surgery, Fe@C NPs penetrated the inner structures and caused structural changes of atherosclerotic plaques, depending on the period of implantation in Wistar rats, serving as a natural bioreactor. The high biocompatibility of the Fe@C NPs shows great potential in the treatment of atherosclerosis disease as an active substance of stent coatings to prevent restenosis and the formation of atherosclerotic plaques. MDPI 2021-07-12 /pmc/articles/PMC8301308/ /pubmed/34356866 http://dx.doi.org/10.3390/biomedicines9070802 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Akhmedov, Shamil
Afanasyev, Sergey
Trusova, Marina
Postnikov, Pavel
Rogovskaya, Yulia
Grakova, Elena
Kopeva, Kristina
Carreon Paz, Rosa Karen
Balakin, Sascha
Wiesmann, Hans-Peter
Opitz, Joerg
Kruppke, Benjamin
Beshchasna, Natalia
Popov, Sergey
Chemically Modified Biomimetic Carbon-Coated Iron Nanoparticles for Stent Coatings: In Vitro Cytocompatibility and In Vivo Structural Changes in Human Atherosclerotic Plaques
title Chemically Modified Biomimetic Carbon-Coated Iron Nanoparticles for Stent Coatings: In Vitro Cytocompatibility and In Vivo Structural Changes in Human Atherosclerotic Plaques
title_full Chemically Modified Biomimetic Carbon-Coated Iron Nanoparticles for Stent Coatings: In Vitro Cytocompatibility and In Vivo Structural Changes in Human Atherosclerotic Plaques
title_fullStr Chemically Modified Biomimetic Carbon-Coated Iron Nanoparticles for Stent Coatings: In Vitro Cytocompatibility and In Vivo Structural Changes in Human Atherosclerotic Plaques
title_full_unstemmed Chemically Modified Biomimetic Carbon-Coated Iron Nanoparticles for Stent Coatings: In Vitro Cytocompatibility and In Vivo Structural Changes in Human Atherosclerotic Plaques
title_short Chemically Modified Biomimetic Carbon-Coated Iron Nanoparticles for Stent Coatings: In Vitro Cytocompatibility and In Vivo Structural Changes in Human Atherosclerotic Plaques
title_sort chemically modified biomimetic carbon-coated iron nanoparticles for stent coatings: in vitro cytocompatibility and in vivo structural changes in human atherosclerotic plaques
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8301308/
https://www.ncbi.nlm.nih.gov/pubmed/34356866
http://dx.doi.org/10.3390/biomedicines9070802
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