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Residual platelet ADP reactivity after clopidogrel treatment is dependent on activation of both the unblocked P2Y(1) and the P2Y(12) receptor and is correlated with protein expression of P2Y(12)

Two ADP receptors have been identified on human platelets: P2Y(1) and P2Y(12). The P2Y(12) receptor blocker clopidogrel is widely used to reduce the risks in acute coronary syndromes, but, currently, there is no P2Y(1) blocker in clinical use. Evidence for variable responses to clopidogrel has been...

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Autores principales: Braun, Oscar Ö, Amisten, Stefan, Wihlborg, Anna-Karin, Hunting, Karen, Nilsson, David, Erlinge, David
Formato: Texto
Lenguaje:English
Publicado: Kluwer Academic Publishers 2006
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2096644/
https://www.ncbi.nlm.nih.gov/pubmed/18404433
http://dx.doi.org/10.1007/s11302-006-9028-9
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author Braun, Oscar Ö
Amisten, Stefan
Wihlborg, Anna-Karin
Hunting, Karen
Nilsson, David
Erlinge, David
author_facet Braun, Oscar Ö
Amisten, Stefan
Wihlborg, Anna-Karin
Hunting, Karen
Nilsson, David
Erlinge, David
author_sort Braun, Oscar Ö
collection PubMed
description Two ADP receptors have been identified on human platelets: P2Y(1) and P2Y(12). The P2Y(12) receptor blocker clopidogrel is widely used to reduce the risks in acute coronary syndromes, but, currently, there is no P2Y(1) blocker in clinical use. Evidence for variable responses to clopidogrel has been described in several reports. The mechanistic explanation for this phenomenon is not fully understood. The aim of this study was to examine mechanisms responsible for variability of 2MeS-ADP, a stable ADP analogue, induced platelet reactivity in clopidogrel-treated patients. Platelet reactivity was assessed by flow cytometry measurements of P-selectin (CD62P) and activated GpIIb/IIIa complex (PAC-1). Residual 2MeS-ADP activation via the P2Y(12) and P2Y(1) receptors was determined by co-incubation with the selective antagonists AR-C69931 and MRS2179 in vitro. P2Y(1) and P2Y(12) receptor expression on both RNA and protein level were determined, as well as the P2Y(12) H1 or H2 haplotypes. Our data suggest that the residual platelet activation of 2MeS-ADP after clopidogrel treatment is partly due to an inadequate antagonistic effect of clopidogrel on the P2Y(12) receptor and partly due to activation of the P2Y(1) receptor, which is unaffected by clopidogrel. Moreover, a correlation between increased P2Y(12) protein expression on platelets and decreased response to clopidogrel was noticed, r(2)=0.43 (P<0.05). No correlation was found between P2Y(12) mRNA levels and clopidogrel resistance, indicating post-transcriptional mechanisms. To achieve additional ADP inhibition in platelets, antagonists directed at the P2Y(1) receptor could be more promising than the development of more potent P2Y(12) receptor antagonists.
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spelling pubmed-20966442008-02-27 Residual platelet ADP reactivity after clopidogrel treatment is dependent on activation of both the unblocked P2Y(1) and the P2Y(12) receptor and is correlated with protein expression of P2Y(12) Braun, Oscar Ö Amisten, Stefan Wihlborg, Anna-Karin Hunting, Karen Nilsson, David Erlinge, David Purinergic Signal Article Two ADP receptors have been identified on human platelets: P2Y(1) and P2Y(12). The P2Y(12) receptor blocker clopidogrel is widely used to reduce the risks in acute coronary syndromes, but, currently, there is no P2Y(1) blocker in clinical use. Evidence for variable responses to clopidogrel has been described in several reports. The mechanistic explanation for this phenomenon is not fully understood. The aim of this study was to examine mechanisms responsible for variability of 2MeS-ADP, a stable ADP analogue, induced platelet reactivity in clopidogrel-treated patients. Platelet reactivity was assessed by flow cytometry measurements of P-selectin (CD62P) and activated GpIIb/IIIa complex (PAC-1). Residual 2MeS-ADP activation via the P2Y(12) and P2Y(1) receptors was determined by co-incubation with the selective antagonists AR-C69931 and MRS2179 in vitro. P2Y(1) and P2Y(12) receptor expression on both RNA and protein level were determined, as well as the P2Y(12) H1 or H2 haplotypes. Our data suggest that the residual platelet activation of 2MeS-ADP after clopidogrel treatment is partly due to an inadequate antagonistic effect of clopidogrel on the P2Y(12) receptor and partly due to activation of the P2Y(1) receptor, which is unaffected by clopidogrel. Moreover, a correlation between increased P2Y(12) protein expression on platelets and decreased response to clopidogrel was noticed, r(2)=0.43 (P<0.05). No correlation was found between P2Y(12) mRNA levels and clopidogrel resistance, indicating post-transcriptional mechanisms. To achieve additional ADP inhibition in platelets, antagonists directed at the P2Y(1) receptor could be more promising than the development of more potent P2Y(12) receptor antagonists. Kluwer Academic Publishers 2006-11-30 2007-06 /pmc/articles/PMC2096644/ /pubmed/18404433 http://dx.doi.org/10.1007/s11302-006-9028-9 Text en © Springer Science + Business Media B.V. 2006
spellingShingle Article
Braun, Oscar Ö
Amisten, Stefan
Wihlborg, Anna-Karin
Hunting, Karen
Nilsson, David
Erlinge, David
Residual platelet ADP reactivity after clopidogrel treatment is dependent on activation of both the unblocked P2Y(1) and the P2Y(12) receptor and is correlated with protein expression of P2Y(12)
title Residual platelet ADP reactivity after clopidogrel treatment is dependent on activation of both the unblocked P2Y(1) and the P2Y(12) receptor and is correlated with protein expression of P2Y(12)
title_full Residual platelet ADP reactivity after clopidogrel treatment is dependent on activation of both the unblocked P2Y(1) and the P2Y(12) receptor and is correlated with protein expression of P2Y(12)
title_fullStr Residual platelet ADP reactivity after clopidogrel treatment is dependent on activation of both the unblocked P2Y(1) and the P2Y(12) receptor and is correlated with protein expression of P2Y(12)
title_full_unstemmed Residual platelet ADP reactivity after clopidogrel treatment is dependent on activation of both the unblocked P2Y(1) and the P2Y(12) receptor and is correlated with protein expression of P2Y(12)
title_short Residual platelet ADP reactivity after clopidogrel treatment is dependent on activation of both the unblocked P2Y(1) and the P2Y(12) receptor and is correlated with protein expression of P2Y(12)
title_sort residual platelet adp reactivity after clopidogrel treatment is dependent on activation of both the unblocked p2y(1) and the p2y(12) receptor and is correlated with protein expression of p2y(12)
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2096644/
https://www.ncbi.nlm.nih.gov/pubmed/18404433
http://dx.doi.org/10.1007/s11302-006-9028-9
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