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1.
Article in English | MEDLINE | ID: mdl-31954174

ABSTRACT

Perinatal and long-term offspring morbidities are strongly dependent on the preservation of placental vascular homeostasis during pregnancy. In adults, the HDL-apoM-S1P complex protects the endothelium and maintains vascular integrity. However, the metabolism and biology of cord blood-derived HDLs (referred to as neonatal HDL, nHDL) strikingly differ from those in adults. Here, we investigate the role of neonatal HDLs in the regulation of placental vascular function. We show that nHDL is a major carrier of sphingosine-1-phosphate (S1P), which is anchored to the particle through apoM (rs = 0.90, p < 0.0001) in the fetal circulation. Furthermore, this complex interacts with S1P receptors on the feto-placental endothelium and activates specifically extracellular signal-regulated protein kinases 1 and 2 (ERK) and phospholipase C (PLC) downstream signaling, promotes endothelial cell proliferation and calcium flux. Notably, the nHDL-S1P complex triggers actin filaments reorganization, leading to an enhancement of placental endothelial barrier function. Additionally, nHDL induces vasorelaxation of isolated placental chorionic arteries. Taken together, these results suggest that circulating nHDL exerts vasoprotective effects on the feto-placental endothelial barrier mainly via S1P signaling.


Subject(s)
Fetal Blood/metabolism , Lipoproteins, HDL/metabolism , Lysophospholipids/metabolism , Placenta/blood supply , Sphingosine/analogs & derivatives , Apolipoproteins M/blood , Apolipoproteins M/metabolism , Cells, Cultured , Endothelium, Vascular/metabolism , Female , Humans , Lipoproteins, HDL/blood , Lysophospholipids/blood , MAP Kinase Signaling System , Pregnancy , Sphingosine/blood , Sphingosine/metabolism , Type C Phospholipases/metabolism
2.
Article in English | MEDLINE | ID: mdl-31923467

ABSTRACT

Endothelial lipase (EL) changes structural and functional properties of high-density lipoprotein (HDL). HDL is a relevant modulator of endothelial nitric oxide synthase (eNOS) activity, but the effect of EL on HDL induced eNOS-activation has not yet been investigated. Here, we examined the impact of EL-modified HDL (EL-HDL) on eNOS activity, subcellular trafficking, and eNOS- dependent vasorelaxation. EL-HDL and empty virus (EV)-HDL as control were isolated from human serum incubated with EL-overexpressing or EV infected HepG2 cells. EL-HDL exhibited higher capacity to induce eNOS phosphorylation at Ser1177 and eNOS activity in EA.hy 926 cells, as well as eNOS-dependent vasorelaxation of mouse aortic rings compared to control HDL. As revealed by confocal and structured illumination-microscopy EL-HDL-driven induction of eNOS was accompanied by an increased eNOS-GFP targeting to the plasma membrane and a lower eNOS-GFP colocalization with Golgi and mitochondria. Widefield microscopy of filipin stained cells revealed that EL-HDL lowered cellular free cholesterol (FC) and as found by thin-layer chromatography increased cellular cholesterol ester (CE) content. Additionally, cholesterol efflux capacity, acyl-coenzyme A: cholesterol acyltransferase activity, and HDL particle uptake were comparable between EL-HDL and control HDL. In conclusion, EL increases eNOS activating capacity of HDL, a phenomenon accompanied by an enrichment of the plasma membrane eNOS pool, a decreased cell membrane FC and increased cellular CE content.


Subject(s)
Lipase/metabolism , Lipoproteins, HDL/metabolism , Nitric Oxide Synthase Type III/metabolism , Cell Line , Cell Membrane/metabolism , Cholesterol/metabolism , Enzyme Activation , Hep G2 Cells , Humans , Phosphorylation , Vasodilation
3.
Sci Rep ; 8(1): 5488, 2018 04 03.
Article in English | MEDLINE | ID: mdl-29615752

ABSTRACT

Indoleamine 2,3-dioxygenase-1 (IDO1) mediates the degradation of L-tryptophan (L-Trp) and is constitutively expressed in the chorionic vascular endothelium of the human placenta with highest levels in the microvasculature. Given that endothelial expression of IDO1 has been shown to regulate vascular tone and blood pressure in mice under the condition of systemic inflammation, we asked whether IDO1 is also involved in the regulation of placental blood flow and if yes, whether this function is potentially impaired in intrauterine growth restriction (IUGR) and pre-eclampsia (PE). In the large arteries of the chorionic plate L-Trp induced relaxation only after upregulation of IDO1 using interferon gamma and tumor necrosis factor alpha. However, ex vivo placental perfusion of pre-constricted cotyledonic vasculature with L-Trp decreases the vessel back pressure without prior IDO1 induction. Further to this finding, IDO1 protein expression and activity is reduced in IUGR and PE when compared to gestational age-matched control tissue. These data suggest that L-Trp catabolism plays a role in the regulation of placental vascular tone, a finding which is potentially linked to placental and fetal growth. In this context our data suggest that IDO1 deficiency is related to the pathogenesis of IUGR and PE.


Subject(s)
Blood Vessels/physiopathology , Endothelium, Vascular/enzymology , Fetal Growth Retardation/enzymology , Placenta/blood supply , Pre-Eclampsia/enzymology , Adult , Arteries/physiopathology , Endothelium, Vascular/metabolism , Female , Fetal Growth Retardation/pathology , Fetal Growth Retardation/physiopathology , Gene Expression Regulation, Enzymologic , Humans , Pre-Eclampsia/pathology , Pre-Eclampsia/physiopathology , Pregnancy , Vasodilation
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