Molecular mechanisms of ovarian hyperstimulation syndrome: Paracrine reduction of endothelial claudin 5 by hCG in vitro is associated with increased endothelial permeability

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Abstract

BACKGROUNDOvarian hyperstimulation syndrome (OHSS) is a potentially life-threatening complication of ovarian stimulation associated with severe vascular hyperpermeability. Primary co-cultures of human luteinized granulosa cells (LGCs) and human umbilical vein endothelial cells (HUVECs) were used as a model of steroidgenic/endothelial cell interaction in OHSS.METHODShCG and the vascular endothelial growth factor (VEGF) inhibitor, Flt-1Fc, were added to co-cultures of LGCs and HUVECs separated by a micropore membrane. Endothelial permeability to labeled bovine serum albumin was measured and the expression of the endothelial cell-specific adhesion protein claudin 5 was investigated using immunocytochemistry and western blotting.RESULTSThe addition of hCG increased HUVEC permeability in the presence of LGCs (P < 0.05). hCG increased VEGF concentrations in both chambers of the co-culture system (P < 0.05). The increased permeability in the presence of LGCs and hCG was inhibited when VEGF was blocked by Flt-1Fc (P < 0.05). Endothelial membrane claudin 5 protein was reduced in the presence of hCG and LGCs, as measured by immunocytochemistry (P < 0.05) and western blotting (P < 0.05) and this reduction was inhibited by Flt-1Fc. hCG had no direct effects on endothelial cell claudin 5.CONCLUSIONSFor OHSS, this novel paradigm suggests that hCG can increase endothelial permeability by up-regulating VEGF in LGCs which causes reduction in endothelial claudin 5 expression.

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Rodewald, M., Herr, D., Duncan, W. C., Fraser, H. M., Hack, G., Konrad, R., … Wulff, C. (2009). Molecular mechanisms of ovarian hyperstimulation syndrome: Paracrine reduction of endothelial claudin 5 by hCG in vitro is associated with increased endothelial permeability. Human Reproduction, 24(5), 1191–1199. https://doi.org/10.1093/humrep/den479

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