Selective augmentation of prostacyclin production by combined prostacyclin synthase and cyclooxygenase-1 gene transfer

Circulation. 2001 Apr 24;103(16):2090-5. doi: 10.1161/01.cir.103.16.2090.

Abstract

Background: We tested the hypothesis that combined cyclooxygenase-1 (COX-1) and prostacyclin synthase (PGIS) gene transfer selectively augments prostacyclin production without a concurrent overproduction of other prostanoids.

Methods and results: ECV304 cells were transfected with bicistronic pCOX-1/PGIS versus pCOX-1 or pPGIS, and prostanoids were analyzed. Contrary to the high prostaglandin E2 synthesis in pCOX-1 transfected cells, selective prostacyclin formation was noted with bicistronic plasmid transfection. Next, we determined the optimal ratio of Ad-COX-1 to Ad-PGIS by transfecting human umbilical vein endothelial cells with various titers of these 2 adenoviral constructs and determined the level of protein expression and prostanoid synthesis. Our results show that optimal ratios of adenoviral titers to achieve a large prostacyclin augmentation without overproduction of prostaglandin E2 or F2alpha were 50 to 100 plaque forming units (pfu) of Ad-COX-1 to 50 pfu of Ad-PGIS per cell. A higher Ad-PGIS to Ad-COX-1 ratio caused a paradoxical decline in prostacyclin synthesis.

Conclusions: Prostacyclin synthesis can be selectively augmented by cotransfecting endothelial cells with an optimal ratio of COX-1 to PGIS. Combined COX-1 and PGIS gene transfer has the potential for therapeutic augmentation of prostacyclin.

Publication types

  • Research Support, Non-U.S. Gov't
  • Research Support, U.S. Gov't, P.H.S.

MeSH terms

  • 6-Ketoprostaglandin F1 alpha / analysis
  • 6-Ketoprostaglandin F1 alpha / biosynthesis
  • Adenoviridae / genetics
  • Arachidonic Acid / metabolism
  • Cell Line
  • Cells, Cultured
  • Chromatography, High Pressure Liquid
  • Cyclooxygenase 1
  • Cytochrome P-450 Enzyme System / genetics
  • Cytochrome P-450 Enzyme System / metabolism*
  • Dinoprostone / analysis
  • Dinoprostone / biosynthesis
  • Dose-Response Relationship, Drug
  • Endothelium, Vascular / chemistry
  • Endothelium, Vascular / cytology
  • Endothelium, Vascular / metabolism*
  • Epoprostenol / analysis
  • Epoprostenol / biosynthesis*
  • Fatty Acids, Unsaturated / analysis
  • Fatty Acids, Unsaturated / biosynthesis
  • Gene Transfer, Horizontal
  • Genetic Vectors / administration & dosage
  • Genetic Vectors / genetics
  • Humans
  • Intramolecular Oxidoreductases / genetics
  • Intramolecular Oxidoreductases / metabolism*
  • Isoenzymes / genetics
  • Isoenzymes / metabolism*
  • Membrane Proteins
  • Plasmids / genetics
  • Prostaglandin-Endoperoxide Synthases / genetics
  • Prostaglandin-Endoperoxide Synthases / metabolism*
  • Transfection

Substances

  • Fatty Acids, Unsaturated
  • Isoenzymes
  • Membrane Proteins
  • Arachidonic Acid
  • 12-hydroxy-5,8,10-heptadecatrienoic acid
  • 6-Ketoprostaglandin F1 alpha
  • Cytochrome P-450 Enzyme System
  • Epoprostenol
  • Cyclooxygenase 1
  • PTGS1 protein, human
  • Prostaglandin-Endoperoxide Synthases
  • Intramolecular Oxidoreductases
  • prostacyclin synthetase
  • Dinoprostone