12/15-Lipoxygenase-derived lipid metabolites induce retinal endothelial cell barrier dysfunction: contribution of NADPH oxidase.
Amira Othman, Saif Ahmad, Sylvia Megyerdi, Rene Mussell, Karishma Choksi, Krishna Rao Maddipati, Ahmed Elmarakby, Nasser Rizk, Mohamed Al-Shabrawey
Index: PLoS ONE 8(2) , e57254, (2013)
Full Text: HTML
Abstract
The purpose of the current study was to evaluate the effect of 12/15-lipoxygenase (12/15-LOX) metabolites on retinal endothelial cell (REC) barrier function. FITC-dextran flux across the REC monolayers and electrical cell-substrate impedance sensing (ECIS) were used to evaluate the effect of 12- and 15-hydroxyeicosatetreanoic acids (HETE) on REC permeability and transcellular electrical resistance (TER). Effect of 12- or 15-HETE on the levels of zonula occludens protein 1 (ZO-1), reactive oxygen species (ROS), NOX2, pVEGF-R2 and pSHP1 was examined in the presence or absence of inhibitors of NADPH oxidase. In vivo studies were performed using Ins2(Akita) mice treated with or without the 12/15-LOX inhibitor baicalein. Levels of HETE and inflammatory mediators were examined by LC/MS and Multiplex Immunoassay respectively. ROS generation and NOX2 expression were also measured in mice retinas. 12- and 15- HETE significantly increased permeability and reduced TER and ZO-1 expression in REC. VEGF-R2 inhibitor reduced the permeability effect of 12-HETE. Treatment of REC with HETE also increased ROS generation and expression of NOX2 and pVEGF-R2 and decreased pSHP1 expression. Treatment of diabetic mice with baicalein significantly decreased retinal HETE, ICAM-1, VCAM-1, IL-6, ROS generation, and NOX2 expression. Baicalein also reduced pVEGF-R2 while restored pSHP1 levels in diabetic retina. Our findings suggest that 12/15-LOX contributes to vascular hyperpermeability during DR via NADPH oxidase dependent mechanism which involves suppression of protein tyrosine phosphatase and activation of VEGF-R2 signal pathway.
Related Compounds
Related Articles:
Imaging of a clinically relevant stroke model: glucose hypermetabolism revisited.
2015-03-01
[Stroke 46(3) , 835-42, (2015)]
2014-01-01
[Int. J. Nanomedicine 9 , 2815-32, (2014)]
2014-12-01
[Am. J. Pathol. 184(12) , 3249-61, (2014)]
Brain pericyte-derived soluble factors enhance insulin sensitivity in GT1-7 hypothalamic neurons.
2015-02-20
[Biochem. Biophys. Res. Commun. 457(4) , 532-7, (2015)]
Evaluation of a dental pulp-derived cell sheet cultured on amniotic membrane substrate.
2015-01-01
[Biomed Mater Eng 25(2) , 203-12, (2015)]