2008PharmacologyRequires access

Enhancement of Thrombocyte Aggregation and Thromboxane B 2 Synthesis by Diethylstilbestrol

M.T.R. Subbiah, L Gallon, Remy L. Yunker

Open publisher page 3 citations

Abstract

Effect of diethylstilbestrol administration on thrombocyte aggregation and thromboxane B2 synthesis was investigated in atherosclerosis-susceptible pigeons. Platelet aggregatory response to arachidonic acid and synthesis of thromboxane B2 from 14C-arachidonic acid was enhanced in thrombocytes derived from diethylstilbestrol-treated pigeons. Platelet total phospholipid concentration was increased in pigeons with diethylstilbestrol treatment. Enhanced thromboxane synthesis might be responsible for increased platelet aggregation, which in turn might contribute to the severe atherosclerosis noted following diethylstilbestrol treatment in several avian species.

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What this paper is about

Effect of diethylstilbestrol administration on thrombocyte aggregation and thromboxane B2 synthesis was investigated in atherosclerosis-susceptible pigeons. Platelet aggregatory response to arachidonic acid and synthesis of thromboxane B2 from 14C-arachidonic acid was enhanced in thrombocytes derived from diethylstilbestrol-treated pigeons. Platelet total phospholipid concentration was increased in pigeons with diethylstilbestrol treatment. Enhanced thromboxane synthesis might be responsible for increased platelet aggregation, which in turn might contribute to the severe atherosclerosis noted following diethylstilbestrol treatment in several avian species.

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Available abstract

Effect of diethylstilbestrol administration on thrombocyte aggregation and thromboxane B2 synthesis was investigated in atherosclerosis-susceptible pigeons. Platelet aggregatory response to arachidonic acid and synthesis of thromboxane B2 from 14C-arachidonic acid was enhanced in thrombocytes derived from diethylstilbestrol-treated pigeons. Platelet total phospholipid concentration was increased in pigeons with diethylstilbestrol treatment. Enhanced thromboxane synthesis might be responsible for increased platelet aggregation, which in turn might contribute to the severe atherosclerosis noted following diethylstilbestrol treatment in several avian species.

Key concepts: Diethylstilbestrol, Thromboxane, Platelet, Arachidonic acid, Endocrinology, Chemistry, Internal medicine, Phospholipid

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