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Biochimica Et Biophysica Acta|March 14, 1978
Further studies on the enzymatic conversion of prostaglandin endoperoxide into prostacyclin by porcine aorta microsomesJ A Salmon, D R Smith, R J Flower, et al.Prostaglandins|February 1, 1984
The use of stable prostaglandins to investigate prostacyclin (PGI2)-binding sites and PGI2-sensitive adenylate cyclase in human platelet membranesM Lombroso, S Nicosia, R Paoletti, et al.European Journal of Pharmacology|March 1, 1979
Biotransformation and cardiovascular effects of arachidonic acid in the dogK M Mullane, G J Dusting, J A Salmon, et al.Prostaglandins|December 1, 1976
The chemical structure of prostaglandin X (prostacyclin)N Whittaker, S Bunting, J Salmon, et al.Artificial Organs|August 1, 1980
Prostacyclin eliminates the thrombocytopenia associated with charcoal hemoperfusion and minimizes heparin and fibrinogen consumptionH F Woods, M J Weston, S Bunting, et al.Prostaglandins|July 1, 1978
Effect of prostacyclin (PGI2) on platelet adhesion to rabbit arterial subendotheliumE A Higgs, S Moncada, J R Vane, et al.British Journal of Clinical Pharmacology|February 1, 1979
Responses of human and baboon arteries to prostaglandin endoperoxides and biologically generated and synthetic prostacyclin: their relevance to cerebral arterial spasm in manD J Boullin, S Bunting, W P Blaso, et al.European Journal of Pharmacology|October 15, 1984
Prostacyclin-sensitive adenylate cyclase in cultured myocytes: differences between rabbit aorta and mesenteric arteryD Oliva, A Noè, S Nicosia, et al.Journal of Physiology and Pharmacology : an Official Journal of the Polish Physiological Society|January 19, 2000
The history of inhibitors of angiotensin converting enzymeJ R VaneJournal of Physiology and Pharmacology : an Official Journal of the Polish Physiological Society|February 24, 2001
The fight against rheumatism: from willow bark to COX-1 sparing drugsJ R VanePageof 70