Key result
Endothelin-1 and sarafotoxin S6c produced a dose-dependent increase in human platelet cGMP without significantly altering cAMP levels, suggesting ETB receptor activation inhibits platelet aggregation.
Why the study?
Does activation of the endothelin B receptor alter cyclic nucleotide levels in human platelets?
Does activation of the endothelin B receptor alter cyclic nucleotide levels in human platelets?
Activation of the ETB receptor in human platelets causes a dose-dependent increase in cGMP, which may contribute to the inhibition of platelet aggregation by endothelins.
ETB activation may inhibit platelet aggregation via cGMP; hypothesis-generating for antithrombotic strategies pending clinical validation.
Endothelins modulate in vitro aggregation of human platelets in a bi-directional manner. Thus endothelin-1 has been shown to act as a potentiator of primary aggregation and an inhibitor of secondary aggregation. The endothelin receptors and corresponding second messengers which cause these effects have not yet been characterised. This study investigated the effect of endothelin-1, an agonist at both the ETA and the ETB receptors and sarafotoxin (SRTX) S6c, a selective ETB agonist, on human platelet cyclic nucleotide levels. Neither endothelin-1 (10(-11) -10(-7) M) nor SRTX S6c (10(-11) -10(-7) M) significantly altered platelet cAMP levels. In contrast, both agonists produced a dose-dependent increase in platelet cGMP. From these data, we conclude that activation of the ETB receptor in human platelets is responsible for an increase in platelet cGMP and may contribute to the inhibition of platelet aggregation caused by the endothelins.
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Dockrell et al. (1996) studied this question. Endothelin-1 and sarafotoxin (SRTX) S6c was evaluated on Platelet cAMP and cGMP levels. Endothelin-1 and sarafotoxin S6c produced a dose-dependent increase in human platelet cGMP without significantly altering cAMP levels, suggesting ETB receptor activation inhibits platelet aggregation.
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