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Honokiol as a specific collagen receptor glycoprotein VI antagonist on human platelets: Functional ex vivo and in vivo studies

Honokiol, derived from Magnolia officinalis, has various pharmacological properties. Platelet activation plays a critical role in cardiovascular diseases. Honokiol has been reported to inhibit collagen-stimulated rabbit platelet aggregation. However, detailed further studies on the characteristics a...

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Autores principales: Lee, Tzu-Yin, Chang, Chao-Chien, Lu, Wan-Jung, Yen, Ting-Lin, Lin, Kuan-Hung, Geraldine, Pitchairaj, Li, Jiun-Yi, Sheu, Joen-Rong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5213647/
https://www.ncbi.nlm.nih.gov/pubmed/28054640
http://dx.doi.org/10.1038/srep40002
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author Lee, Tzu-Yin
Chang, Chao-Chien
Lu, Wan-Jung
Yen, Ting-Lin
Lin, Kuan-Hung
Geraldine, Pitchairaj
Li, Jiun-Yi
Sheu, Joen-Rong
author_facet Lee, Tzu-Yin
Chang, Chao-Chien
Lu, Wan-Jung
Yen, Ting-Lin
Lin, Kuan-Hung
Geraldine, Pitchairaj
Li, Jiun-Yi
Sheu, Joen-Rong
author_sort Lee, Tzu-Yin
collection PubMed
description Honokiol, derived from Magnolia officinalis, has various pharmacological properties. Platelet activation plays a critical role in cardiovascular diseases. Honokiol has been reported to inhibit collagen-stimulated rabbit platelet aggregation. However, detailed further studies on the characteristics and functional activity of honokiol in platelet activation are relatively lacking. In the present study, honokiol specifically inhibited platelet aggregation and Ca(+2) ion mobilization stimulated with collagen or convulxin, an agonist of glycoprotein (GP) VI, but not with aggretin, an agonist of integrin α(2)β(1). Honokiol also attenuated the phosphorylation of Lyn, PLCγ2, PKC, MAPKs, and Akt after convulxin stimulation. Honokiol have no cytotoxicity in zebrafish embryos. Honokiol diminished the binding of anti-GP VI (FITC-JAQ1) mAb to human platelets, and it also reduced the coimmunoprecipitation of GP VI-bound Lyn after convulxin stimulation. The surface plasmon resonance results revealed that honokiol binds directly to GP VI, with a K(D) of 289 μM. Platelet function analysis revealed that honokiol substantially prolonged the closure time in human whole blood and increased the occlusion time of thrombotic platelet plug formation in mice. In conclusion, honokiol acts as a potent antagonist of collagen GP VI in human platelets, and it has therapeutic potential in the prevention of the pathological thrombosis.
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spelling pubmed-52136472017-01-09 Honokiol as a specific collagen receptor glycoprotein VI antagonist on human platelets: Functional ex vivo and in vivo studies Lee, Tzu-Yin Chang, Chao-Chien Lu, Wan-Jung Yen, Ting-Lin Lin, Kuan-Hung Geraldine, Pitchairaj Li, Jiun-Yi Sheu, Joen-Rong Sci Rep Article Honokiol, derived from Magnolia officinalis, has various pharmacological properties. Platelet activation plays a critical role in cardiovascular diseases. Honokiol has been reported to inhibit collagen-stimulated rabbit platelet aggregation. However, detailed further studies on the characteristics and functional activity of honokiol in platelet activation are relatively lacking. In the present study, honokiol specifically inhibited platelet aggregation and Ca(+2) ion mobilization stimulated with collagen or convulxin, an agonist of glycoprotein (GP) VI, but not with aggretin, an agonist of integrin α(2)β(1). Honokiol also attenuated the phosphorylation of Lyn, PLCγ2, PKC, MAPKs, and Akt after convulxin stimulation. Honokiol have no cytotoxicity in zebrafish embryos. Honokiol diminished the binding of anti-GP VI (FITC-JAQ1) mAb to human platelets, and it also reduced the coimmunoprecipitation of GP VI-bound Lyn after convulxin stimulation. The surface plasmon resonance results revealed that honokiol binds directly to GP VI, with a K(D) of 289 μM. Platelet function analysis revealed that honokiol substantially prolonged the closure time in human whole blood and increased the occlusion time of thrombotic platelet plug formation in mice. In conclusion, honokiol acts as a potent antagonist of collagen GP VI in human platelets, and it has therapeutic potential in the prevention of the pathological thrombosis. Nature Publishing Group 2017-01-05 /pmc/articles/PMC5213647/ /pubmed/28054640 http://dx.doi.org/10.1038/srep40002 Text en Copyright © 2017, The Author(s) http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Lee, Tzu-Yin
Chang, Chao-Chien
Lu, Wan-Jung
Yen, Ting-Lin
Lin, Kuan-Hung
Geraldine, Pitchairaj
Li, Jiun-Yi
Sheu, Joen-Rong
Honokiol as a specific collagen receptor glycoprotein VI antagonist on human platelets: Functional ex vivo and in vivo studies
title Honokiol as a specific collagen receptor glycoprotein VI antagonist on human platelets: Functional ex vivo and in vivo studies
title_full Honokiol as a specific collagen receptor glycoprotein VI antagonist on human platelets: Functional ex vivo and in vivo studies
title_fullStr Honokiol as a specific collagen receptor glycoprotein VI antagonist on human platelets: Functional ex vivo and in vivo studies
title_full_unstemmed Honokiol as a specific collagen receptor glycoprotein VI antagonist on human platelets: Functional ex vivo and in vivo studies
title_short Honokiol as a specific collagen receptor glycoprotein VI antagonist on human platelets: Functional ex vivo and in vivo studies
title_sort honokiol as a specific collagen receptor glycoprotein vi antagonist on human platelets: functional ex vivo and in vivo studies
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5213647/
https://www.ncbi.nlm.nih.gov/pubmed/28054640
http://dx.doi.org/10.1038/srep40002
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