Human platelets and blood vessels can synthesize prostaglandins and thromboxanes which have potent biological activities. Platelets produce thromboxane A2 which induces platelet aggregation and is a vasoconstrictor, as well as prostaglandin D2 which inhibits platelet aggregation. Blood vessels produce prostaglandin I2 which inhibits aggregation and is a vasodilator and recently 7e have shown that they also produce thromboxane A2. The precursor of these potent aggregating and inhibiting agents is arachidonic acid which can induce platelet aggregation in vitro and in vivo in association with prostaglandin and thromboxane synthesis. The purpose of this work is to investigate further the synthesis of prostaglandins by platelets and blood vessels and elucidate its significance in hemostasis, thrombosis and atherosclerosis. We propose to continue to investigate the mechanisms whereby arachidonic acid and other fatty acids are incorporated into the platelet phospholipids and released to become substrate for the platelet enzymes of the lipoxygenase and cyclooxygenase pathways. This study includes isolation and characterization of the lipoxygenase and the phospholipase A2 which releases arachidonic acid. We shall continue our studies on the binding of prostaglandin to platelets to characterize the receptor. We shall study the ultrastructural and biochemical responses of arteries and veins to agents which can damage these vessels or stimulate production of prostaglandin I2. Finally, we shall search for abnormal prostaglandin or thromboxane synthesis by the platelets of selected patients. The methods employed include tests of platelet aggregation and the release action, determination of phospholipase activity, transmission and scanning electron microscopy of blood vessels and qualitative determination of prostaglandins and thromboxanes by thin layer chromatography, bioassay and, radioimmunoassay.

Agency
National Institute of Health (NIH)
Institute
National Heart, Lung, and Blood Institute (NHLBI)
Type
Research Project (R01)
Project #
3R01HL014890-13S1
Application #
3334852
Study Section
Hematology Subcommittee 2 (HEM)
Project Start
1975-05-01
Project End
1985-11-30
Budget Start
1985-09-30
Budget End
1985-11-30
Support Year
13
Fiscal Year
1985
Total Cost
Indirect Cost
Name
Thomas Jefferson University
Department
Type
Schools of Medicine
DUNS #
061197161
City
Philadelphia
State
PA
Country
United States
Zip Code
19107
Wojenski, C M; Silver, M J; Walker, J (1991) Eicosapentaenoic acid ethyl ester as an antithrombotic agent: comparison to an extract of fish oil. Biochim Biophys Acta 1081:33-8
Ingerman-Wojenski, C M; Silver, M J (1988) Model system to study interaction of platelets with damaged arterial wall. II. Inhibition of smooth muscle cell proliferation by dipyridamole and AH-P719. Exp Mol Pathol 48:116-34
Ingerman-Wojenski, C M; Silver, M J; Mueller, S N et al. (1988) Prostacyclin synthesis by endothelial cells from human umbilical veins: effect of cumulative population doublings. Prostaglandins 36:127-37
Alam, I; Silver, M J (1987) Metabolism of 1-alkyl-2-acyl-GPC in human platelets in response to stimulation by thrombin. Thromb Res 45:311-22
Ingerman-Wojenski, C M; Smith, M; Silver, M J (1987) Alloxan-induced hyperglycemia in rabbits and the response of platelets to aggregating agents in vitro and to exposed subendothelium in vivo. Thromb Res 46:635-47
Cesar, J; DiMinno, G; Alam, I et al. (1987) Plasma free fatty acid metabolism during storage of platelet concentrates for transfusion. Transfusion 27:434-7
Alam, I; Silver, M J (1986) Acetyltransferase activity in human platelet microsomes and washed platelets. Biochim Biophys Acta 884:67-72
DiMinno, G; Silver, M J; Cerbone, A M et al. (1986) Platelet fibrinogen binding in diabetes mellitus. Differences between binding to platelets from nonretinopathic and retinopathic diabetic patients. Diabetes 35:182-5
McKean, M L; Silver, M J; Authi, K S et al. (1986) Formation of diacyl- and alkylacylphosphatidylcholine by the membranes of human platelets. FEBS Lett 195:38-42
DiMinno, G; Silver, M J; Cerbone, A M et al. (1985) Increased binding of fibrinogen to platelets in diabetes: the role of prostaglandins and thromboxane. Blood 65:156-62

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