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Search Results to Cecil Pace-Asciak

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One or more keywords matched the following items that are connected to Pace-Asciak, Cecil

Item TypeName
Concept 15-Oxoprostaglandin 13-Reductase
Concept Alcohol Oxidoreductases
Concept Intramolecular Oxidoreductases
Concept Oxidoreductases
Concept Hydroxyprostaglandin Dehydrogenases
Academic Article The hepoxilins and some analogues: a review of their biology.
Academic Article Prostaglandin biosynthesis and catabolism in the lamb ductus arteriosus, aorta and pulmonary artery.
Academic Article Prostaglandin 9-hydroxydehydrogenase activity in the adult rat kidney. Identification, assay, pathway, and some enzyme properties.
Academic Article Prostaglandin biosynthesis and catabolism in the developing fetal sheep kidney.
Academic Article Biosynthesis and catabolism of prostaglandins during animal development.
Academic Article Activity profiles of prostaglandin 15- and 9-hydroxydehydrogenase and 13-reductase in the developing rat kidney.
Academic Article Prostaglandins during development. I. Age-dependent activity profiles of prostaglandin 15-hydroxydehydrogenase and 13,14-reductase in lung tissue from late prenatal, early postnatal and adult rats.
Academic Article Prostaglandins during development. II. Identification of prostaglandin 9-hydroxy dehydrogenase activity in adult rat kidney homogenates.
Academic Article Prostaglandin synthetase activity in the rat stomach fundus. Activation by L-norepinephrine and related compounds.
Academic Article Age-related differences in the urinary excretion of prostaglandin F2 alpha catabolites in the rat.
Academic Article 9-Hydroxyprostaglandin dehydrogenase in rat kidney cortex converts prostaglandin I2 into 15-keto-13,14-dihydro 6-ketoprostaglandin E1.
Academic Article Developmental aspects of the prostaglandin biosynthetic and catabolic systems.
Academic Article Formation of 14,15-hepoxilins of the A(3) and B(3) series through a 15-lipoxygenase and hydroperoxide isomerase present in garlic roots.
Academic Article Furanoid F-Acid F6 Uniquely Induces NETosis Compared to C16 and C18 Fatty Acids in Human Neutrophils.

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  • Oxidoreductases