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C G Kevil

Publications and source records attributed to C G Kevil.

20 records · Page 2Linked to original sources

Nitric oxide enhances hydrogen peroxide-mediated endothelial permeability in vitro.

The objective of this study was to evaluate the effects of nitric oxide (NO) on H2O2-mediated endothelial permeability. H2O2 (0.1 mM) increased permeability at 90 min to 298% of baseline. Spermine NONOate (SNO), an NO donor, at 0.1 or 1 mM did not alter permeability. However, 0.1 mM H2O2 + 1 mM SNO increased permeability to 764%, twice that of 0.1 mM H2O2 alone. These treatments were not directly toxic to endothelial cells. This NO effect was concentration dependent, inasmuch as 0.1 mM SNO did not significantly change H2O2-mediated permeability. The NO-enhanced, H2O2-dependent permeability required the simultaneous presence of NO and H2O2, inasmuch as preincubation with SNO for 30 min followed by 0.1 mM H2O2 did not alter permeability. Staining of endothelial junctions showed widening of the intercellular space only in junctions of cells exposed to H2O2 (0.1 mM) + SNO (1 mM). Furthermore, NO did not affect H2O2 metabolism by endothelial cells but significantly depleted intracellular glutathione. This reduction of cell glutathione produced by NO exposure recovered 15-30 min after removal of the NO donor. NO-enhanced permeability was completely blocked by methionine (1 mM), a scavenger of reactive oxygen species, and by the iron chelator desferrioxamine (0.1 mM). These results suggest that NO may exacerbate the effects of H2O2-dependent increase in endothelial monolayer permeability via the iron-catalyzed formation of reactive oxygen metabolites.

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Translational regulation of vascular permeability factor by eukaryotic initiation factor 4E: implications for tumor angiogenesis.

Studies aimed at elucidating the function of the protein synthesis factor eukaryotic initiation factor 4E (elF-4E) have demonstrated that overexpression of this protein results in marked cell phenotypic and proliferative changes, including neoplastic transformation of cells. These data suggest that elF-4E may somehow participate in the development and progression of tumors in vivo. In order to determine how elF-4E exerts its transforming effects, we examined vascular permeability factor (VPF) levels in cells transfected with an elF-4E vector. Cells overexpressing elF-4E showed an increase in intracellular, and an average 130-fold increase in secreted VPF protein levels (CHO 0.13+/-0.12 ng/ml; CHO-4E 20.5+/-12.5 ng/ml) over control cells. HUVEC growth induction revealed these VPF levels to be biologically active. Northern analysis revealed no difference in VPF transcript between the 2 cell lines. Polysome analysis showed that the VPF message in elF-4E-transfected cells was associated with the heavy polysomal regions, whereas the VPF message was associated with light polysomes in control cells. These data strongly suggest that enhanced VPF expression is achieved through translational regulation rather than transcriptional regulation in cells overexpressing elF-4E. This indicates that elF-4E-induced VPF expression may be an important factor in some forms of tumor angiogenesis and development.

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