Search bioRxiv⌕ Search

Biology subjects

Kurlak, L. O.

Publications and source records attributed to Kurlak, L. O..

2 recordsLinked to original sources

Umbilical-brain endothelial communication via TSP-1 is linked with reduced brain angiogenesis in offspring of preeclampsia

BackgroundPreeclampsia, a maternal hypertensive syndrome affect fetal brain development and cerebral angiogenesis, with potential acute and long-term consequences. Underlying mechanisms of these brain vascular alterations are unknown. This study investigates the role of thrombospondin-1 (TSP-1), an antiangiogenic glycoprotein, as a key mediator of communication between the fetoplacental and fetal brain endothelium in the context of preeclampsia. MethodsConditioned media (CM) of human umbilical vein endothelial cells (HUVECs) from normal pregnancies (NP-CM) and preeclamptic pregnancies (PE-CM), were used to treat human (hCMEC/D3) and murine brain microvascular endothelial cells (BMECs). A proteomic analysis was performed in plasma of the umbilical cord of normal pregnancy and preeclampsia. TSP-1 was identify using proteomic analysis and confirmed by Western blot. PE-CM depleted of TSP-1, using immunoprecipitation, was used to evaluate protein-protein interaction with vascular endothelial growth factor (VEGF). Antibody-mediated blockage of TSP-1 was used to investigate antiangiogenic effect and pro-angiogenic signaling pathways in brain endothelial cells exposed to PE-CM. ResultsPE-CM significantly reduced angiogenesis, migration, and invasion of brain endothelial cells and altered cytoskeletal organization. These effects were accompanied by reduced VEGFR2 and AKT signaling, indicating impaired angiogenic pathways. Proteomic analysis of umbilical cord plasma revealed elevated TSP-1 levels in preeclampsia, which was confirmed by Western blotting. TSP-1 was also increased in PE-CM, and immunoprecipitation assays suggested a protein-protein interaction with VEGF. Antibody-mediated blockade of TSP-1 restored angiogenesis, as reflected by increased total tube length, and rescued VEGFR2 and AKT signaling in brain endothelial cells exposed to PE-CM. ConclusionTSP-1-mediated endothelium-endothelium communication between placenta-brain axis in offspring of mothers with preeclampsia. This communication mediated by TSP-1 may contribute to acute and long-lasting cerebrovascular dysfunction observed in infants exposed to preeclampsia.

physiology↗

Extracellular vesicles from preeclampsia disrupt the blood-brain barrier via reduced claudin-5: potential role of vascular endothelial growth factor

BackgroundPhysiopathology of life-treating cerebrovascular complications in preeclampsia are yet unknown. We investigated whether disruption of the blood-brain barrier (BBB), generated using circulating small extracellular vesicles (sEVs) from women with preeclampsia or placentae cultured under hypoxic conditions, impairs the expression of tight junction proteins, such as claudin 5 (CLDN5), mediated by VEGF and activation of VEGF receptor 2 (KDR). MethodssEVs were isolated from plasma (normal pregnancy, sEVs-NP, n=9); preeclampsia, sEVs-PE, n=9) or placental explants from normotensive pregnancies, cultured in normoxia (sEVs-Nor, n=10) or hypoxia (sEVs-Hyp, n=10). The integrity of the BBB was evaluated using in vitro (human and mice brain endothelial cell lines) and in vivo (non-pregnant C57BL/6 mice (4 to 5 months old, (n=10) were injected with sEVs-Hyp), models. ResultssEVs-PE and sEVs-Hyp reduced CLND5 levels (p<0.05) in the endothelial cell membrane without affecting other tight junction proteins. These results were negated with sEVs-PE sonication. sEVs-Hyp injected into non-pregnant mice generated neurological deficits and BBB disruption, specifically in the posterior area of the brain, associated with reduction in CLND5 levels in the brain cortex. Furthermore, sEVs-PE and sEVs-sHyp had higher VEGF levels than sEVs-NP and sEVs-Nor, respectively. Human brain endothelial cells exposed to sEVs-PE or sEVs-sHyp exhibited a reduction in the activation of KDR. ConclusionsEVs from hypoxic placentae and plasma from women with preeclampsia disrupt the BBB, via reduction of CLDN5, a phenomenon that may involve VEGF contained within these vesicles. These findings will improve the elucidation of cerebrovascular alterations in women with preeclampsia.

physiology↗