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Paramagnetic Manganese in the Atherosclerotic Plaque of Carotid Arteries

The search for adequate markers of atherosclerotic plaque (AP) instability in the context of assessment of the ischemic stroke risk in patients with atherosclerosis of the carotid arteries as well as for solid physical and chemical factors that are connected with the AP stability is extremely import...

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Autores principales: Chelyshev, Yury, Gafurov, Marat, Ignatyev, Igor, Zanochkin, Alexey, Mamin, Georgy, Sorokin, Boris, Sorokina, Alexandra, Lyapkalo, Natalya, Gizatullina, Nazima, Mukhamedshina, Yana, Orlinskii, Sergei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5203874/
https://www.ncbi.nlm.nih.gov/pubmed/28078287
http://dx.doi.org/10.1155/2016/3706280
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author Chelyshev, Yury
Gafurov, Marat
Ignatyev, Igor
Zanochkin, Alexey
Mamin, Georgy
Sorokin, Boris
Sorokina, Alexandra
Lyapkalo, Natalya
Gizatullina, Nazima
Mukhamedshina, Yana
Orlinskii, Sergei
author_facet Chelyshev, Yury
Gafurov, Marat
Ignatyev, Igor
Zanochkin, Alexey
Mamin, Georgy
Sorokin, Boris
Sorokina, Alexandra
Lyapkalo, Natalya
Gizatullina, Nazima
Mukhamedshina, Yana
Orlinskii, Sergei
author_sort Chelyshev, Yury
collection PubMed
description The search for adequate markers of atherosclerotic plaque (AP) instability in the context of assessment of the ischemic stroke risk in patients with atherosclerosis of the carotid arteries as well as for solid physical and chemical factors that are connected with the AP stability is extremely important. We investigate the inner lining of the carotid artery specimens from the male patients with atherosclerosis (27 patients, 42–64 years old) obtained during carotid endarterectomy by using different analytical tools including ultrasound angiography, X-ray analysis, immunological, histochemical analyses, and high-field (3.4 T) pulse electron paramagnetic resonance (EPR) at 94 GHz. No correlation between the stable and unstable APs in the sense of the calcification is revealed. In all of the investigated samples, the EPR spectra of manganese, namely, Mn(2+) ions, are registered. Spectral and relaxation characteristics of Mn(2+) ions are close to those obtained for the synthetic (nano) hydroxyapatite species but differ from each other for stable and unstable APs. This demonstrates that AP stability could be specified by the molecular organization of their hydroxyapatite components. The origin of the obtained differences and the possibility of using EPR of Mn(2+) as an AP stability marker are discussed.
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spelling pubmed-52038742017-01-11 Paramagnetic Manganese in the Atherosclerotic Plaque of Carotid Arteries Chelyshev, Yury Gafurov, Marat Ignatyev, Igor Zanochkin, Alexey Mamin, Georgy Sorokin, Boris Sorokina, Alexandra Lyapkalo, Natalya Gizatullina, Nazima Mukhamedshina, Yana Orlinskii, Sergei Biomed Res Int Research Article The search for adequate markers of atherosclerotic plaque (AP) instability in the context of assessment of the ischemic stroke risk in patients with atherosclerosis of the carotid arteries as well as for solid physical and chemical factors that are connected with the AP stability is extremely important. We investigate the inner lining of the carotid artery specimens from the male patients with atherosclerosis (27 patients, 42–64 years old) obtained during carotid endarterectomy by using different analytical tools including ultrasound angiography, X-ray analysis, immunological, histochemical analyses, and high-field (3.4 T) pulse electron paramagnetic resonance (EPR) at 94 GHz. No correlation between the stable and unstable APs in the sense of the calcification is revealed. In all of the investigated samples, the EPR spectra of manganese, namely, Mn(2+) ions, are registered. Spectral and relaxation characteristics of Mn(2+) ions are close to those obtained for the synthetic (nano) hydroxyapatite species but differ from each other for stable and unstable APs. This demonstrates that AP stability could be specified by the molecular organization of their hydroxyapatite components. The origin of the obtained differences and the possibility of using EPR of Mn(2+) as an AP stability marker are discussed. Hindawi Publishing Corporation 2016 2016-12-18 /pmc/articles/PMC5203874/ /pubmed/28078287 http://dx.doi.org/10.1155/2016/3706280 Text en
spellingShingle Research Article
Chelyshev, Yury
Gafurov, Marat
Ignatyev, Igor
Zanochkin, Alexey
Mamin, Georgy
Sorokin, Boris
Sorokina, Alexandra
Lyapkalo, Natalya
Gizatullina, Nazima
Mukhamedshina, Yana
Orlinskii, Sergei
Paramagnetic Manganese in the Atherosclerotic Plaque of Carotid Arteries
title Paramagnetic Manganese in the Atherosclerotic Plaque of Carotid Arteries
title_full Paramagnetic Manganese in the Atherosclerotic Plaque of Carotid Arteries
title_fullStr Paramagnetic Manganese in the Atherosclerotic Plaque of Carotid Arteries
title_full_unstemmed Paramagnetic Manganese in the Atherosclerotic Plaque of Carotid Arteries
title_short Paramagnetic Manganese in the Atherosclerotic Plaque of Carotid Arteries
title_sort paramagnetic manganese in the atherosclerotic plaque of carotid arteries
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5203874/
https://www.ncbi.nlm.nih.gov/pubmed/28078287
http://dx.doi.org/10.1155/2016/3706280
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