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Unraveling the Mechanism of Platelet Aggregation Suppression by Monoterpenoids

Platelet aggregation causes various diseases and therefore challenges the development of novel antiaggregatory drugs. In this study, we report the possible mechanism of platelet aggregation suppression by newly synthesized myrtenol-derived monoterpenoids carrying different heteroatoms (sulphur, oxyg...

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Autores principales: Nikitina, Liliya E., Pavelyev, Roman S., Gilfanov, Ilmir R., Kiselev, Sergei V., Azizova, Zulfiya R., Ksenofontov, Alexander A., Bocharov, Pavel S., Antina, Elena V., Klochkov, Vladimir V., Timerova, Ayzira F., Rakhmatullin, Ilfat Z., Ostolopovskaya, Olga V., Khelkhal, Mohammed A., Boichuk, Sergei V., Galembikova, Aigul R., Andriutsa, Natalia S., Frolova, Larisa L., Kutchin, Alexander V., Kayumov, Airat R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8773274/
https://www.ncbi.nlm.nih.gov/pubmed/35049733
http://dx.doi.org/10.3390/bioengineering9010024
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author Nikitina, Liliya E.
Pavelyev, Roman S.
Gilfanov, Ilmir R.
Kiselev, Sergei V.
Azizova, Zulfiya R.
Ksenofontov, Alexander A.
Bocharov, Pavel S.
Antina, Elena V.
Klochkov, Vladimir V.
Timerova, Ayzira F.
Rakhmatullin, Ilfat Z.
Ostolopovskaya, Olga V.
Khelkhal, Mohammed A.
Boichuk, Sergei V.
Galembikova, Aigul R.
Andriutsa, Natalia S.
Frolova, Larisa L.
Kutchin, Alexander V.
Kayumov, Airat R.
author_facet Nikitina, Liliya E.
Pavelyev, Roman S.
Gilfanov, Ilmir R.
Kiselev, Sergei V.
Azizova, Zulfiya R.
Ksenofontov, Alexander A.
Bocharov, Pavel S.
Antina, Elena V.
Klochkov, Vladimir V.
Timerova, Ayzira F.
Rakhmatullin, Ilfat Z.
Ostolopovskaya, Olga V.
Khelkhal, Mohammed A.
Boichuk, Sergei V.
Galembikova, Aigul R.
Andriutsa, Natalia S.
Frolova, Larisa L.
Kutchin, Alexander V.
Kayumov, Airat R.
author_sort Nikitina, Liliya E.
collection PubMed
description Platelet aggregation causes various diseases and therefore challenges the development of novel antiaggregatory drugs. In this study, we report the possible mechanism of platelet aggregation suppression by newly synthesized myrtenol-derived monoterpenoids carrying different heteroatoms (sulphur, oxygen, or nitrogen). Despite all tested compounds suppressed the platelet aggregation in vitro, the most significant effect was observed for the S-containing compounds. The molecular docking confirmed the putative interaction of all tested compounds with the platelet’s P2Y(12) receptor suggesting that the anti-aggregation properties of monoterpenoids are implemented by blocking the P2Y(12) function. The calculated binding force depended on heteroatom in monoterpenoids and significantly decreased with the exchanging of the sulphur atom with oxygen or nitrogen. On the other hand, in NMR studies on dodecyl phosphocholine (DPC) as a membrane model, only S-containing compound was found to be bound with DPC micelles surface. Meanwhile, no stable complexes between DPC micelles with either O- or N-containing compounds were observed. The binding of S-containing compound with cellular membrane reinforces the mechanical properties of the latter, thereby preventing its destabilization and subsequent clot formation on the phospholipid surface. Taken together, our data demonstrate that S-containing myrtenol-derived monoterpenoid suppresses the platelet aggregation in vitro via both membrane stabilization and blocking the P2Y(12) receptor and, thus, appears as a promising agent for hemostasis control.
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spelling pubmed-87732742022-01-21 Unraveling the Mechanism of Platelet Aggregation Suppression by Monoterpenoids Nikitina, Liliya E. Pavelyev, Roman S. Gilfanov, Ilmir R. Kiselev, Sergei V. Azizova, Zulfiya R. Ksenofontov, Alexander A. Bocharov, Pavel S. Antina, Elena V. Klochkov, Vladimir V. Timerova, Ayzira F. Rakhmatullin, Ilfat Z. Ostolopovskaya, Olga V. Khelkhal, Mohammed A. Boichuk, Sergei V. Galembikova, Aigul R. Andriutsa, Natalia S. Frolova, Larisa L. Kutchin, Alexander V. Kayumov, Airat R. Bioengineering (Basel) Article Platelet aggregation causes various diseases and therefore challenges the development of novel antiaggregatory drugs. In this study, we report the possible mechanism of platelet aggregation suppression by newly synthesized myrtenol-derived monoterpenoids carrying different heteroatoms (sulphur, oxygen, or nitrogen). Despite all tested compounds suppressed the platelet aggregation in vitro, the most significant effect was observed for the S-containing compounds. The molecular docking confirmed the putative interaction of all tested compounds with the platelet’s P2Y(12) receptor suggesting that the anti-aggregation properties of monoterpenoids are implemented by blocking the P2Y(12) function. The calculated binding force depended on heteroatom in monoterpenoids and significantly decreased with the exchanging of the sulphur atom with oxygen or nitrogen. On the other hand, in NMR studies on dodecyl phosphocholine (DPC) as a membrane model, only S-containing compound was found to be bound with DPC micelles surface. Meanwhile, no stable complexes between DPC micelles with either O- or N-containing compounds were observed. The binding of S-containing compound with cellular membrane reinforces the mechanical properties of the latter, thereby preventing its destabilization and subsequent clot formation on the phospholipid surface. Taken together, our data demonstrate that S-containing myrtenol-derived monoterpenoid suppresses the platelet aggregation in vitro via both membrane stabilization and blocking the P2Y(12) receptor and, thus, appears as a promising agent for hemostasis control. MDPI 2022-01-10 /pmc/articles/PMC8773274/ /pubmed/35049733 http://dx.doi.org/10.3390/bioengineering9010024 Text en © 2022 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
Nikitina, Liliya E.
Pavelyev, Roman S.
Gilfanov, Ilmir R.
Kiselev, Sergei V.
Azizova, Zulfiya R.
Ksenofontov, Alexander A.
Bocharov, Pavel S.
Antina, Elena V.
Klochkov, Vladimir V.
Timerova, Ayzira F.
Rakhmatullin, Ilfat Z.
Ostolopovskaya, Olga V.
Khelkhal, Mohammed A.
Boichuk, Sergei V.
Galembikova, Aigul R.
Andriutsa, Natalia S.
Frolova, Larisa L.
Kutchin, Alexander V.
Kayumov, Airat R.
Unraveling the Mechanism of Platelet Aggregation Suppression by Monoterpenoids
title Unraveling the Mechanism of Platelet Aggregation Suppression by Monoterpenoids
title_full Unraveling the Mechanism of Platelet Aggregation Suppression by Monoterpenoids
title_fullStr Unraveling the Mechanism of Platelet Aggregation Suppression by Monoterpenoids
title_full_unstemmed Unraveling the Mechanism of Platelet Aggregation Suppression by Monoterpenoids
title_short Unraveling the Mechanism of Platelet Aggregation Suppression by Monoterpenoids
title_sort unraveling the mechanism of platelet aggregation suppression by monoterpenoids
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8773274/
https://www.ncbi.nlm.nih.gov/pubmed/35049733
http://dx.doi.org/10.3390/bioengineering9010024
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