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H al-Badawi

Publications and source records attributed to H al-Badawi.

2 recordsLinked to original sources

Endogenous reactive oxygen metabolites mediate sublethal endothelial cell dysfunction during reoxygenation.

PURPOSE: Endothelial cells (EC) secrete vasoactive eicosanoids, which maintain organ blood flow. Because EC are a major source of eicosanoids, we studied the effects of reoxygenation on EC prostacyclin production. METHODS: Bovine aortic EC cultures were exposed to 2 hours of normoxia, then 1 hour of hypoxia (PO2 = 10 +/- 3.5 mm Hg), followed by 1.5 hours of reoxygenation in either normal medium or medium plus either superoxide dismutase (SOD, 300 units/ml), catalase (1200 units/ml), allopurinol (5.0 x 10(-4) mol/L), or dinitrophenol (10(-4) mol/L). RESULTS: Prostacyclin production decreased to 40% (p < 0.05) of basal prostacyclin production after 1 hour of hypoxia. EC reoxygenated with control medium recovered to 48% of basal prostacyclin production. EC reoxygenated in SOD resulted in recovery (p < 0.05) to 154% of basal prostacyclin production after 60 minutes. Catalase treatment resulted in recovery to 105% (p < 0.05) of basal prostacyclin production within 30 minutes of reoxygenation. Allopurinol treatment resulted in 77% recovery (p < 0.05) of basal prostacyclin production only during 30 minutes of reoxygenation. Dinitrophenol treatment resulted in significant (> or = 85%, p < 0.05) sustained recovery of basal prostacyclin production at 30, 60, and 90 minutes of experimental reperfusion. CONCLUSIONS: The hypoxia-induced decrease in EC prostacyclin does not recover during reoxygenation. Catalase/SOD allowed return to baseline prostacyclin production during reoxygenation, implicating reactive oxygen metabolites as mediators of decreased eicosanoid biosynthesis. Recovery of prostacyclin production after 60 minutes reoxygenation with dinitrophenol but not allopurinol suggests a mitochondrial origin of the oxygen metabolites responsible for decreased prostacyclin biosynthesis.

Analysis of Variance↗

Immediate responses of endothelial cells to hypoxia and reoxygenation: an in vitro model of cellular dysfunction.

We have studied endothelial functions and integrity under clinically relevant levels of acute and profound hypoxia. Bovine aortic endothelial cells (EC) grown on microcarrier beads were exposed for 15-min intervals to normoxic (20% O2) or hypoxic (1-2% O2) medium. Control intervals were followed by four hypoxic and then four normoxic intervals for reoxygenation. Prostacyclin release from EC significantly decreased after only 15 min of hypoxia and remained low despite reoxygenation. This decrease in prostacyclin release was not coincident with decreased viable cells (Trypan blue exclusion) or with increased cell lysis (increased lactate dehydrogenase) after hypoxia or reoxygenation. When the medium was supplemented with 30 microM arachidonate (saturating concentration), prostacyclin release still significantly decreased after 30 min of hypoxia but returned to baseline levels by 30 min of reoxygenation. Similar results were obtained for thromboxane B2 release. These data suggest that 1) EC decrease prostacyclin release during acute, profound hypoxia, 2) EC decrease prostaglandin production during hypoxia despite abundant exogenous arachidonate, and 3) recovery of prostaglandin production is dependent on exogenous arachidonate during reoxygenation.

Animals↗