Placental exosomal miR-125b triggered endothelial barrier injury in preeclampsia

微泡 子痫前期 内皮功能障碍 脐静脉 胎盘 内皮 VE钙粘蛋白 胎盘形成 内皮干细胞 下调和上调 外体 内皮细胞活化 势垒函数 医学 男科 免疫学 生物 内科学 小RNA 胎儿 细胞生物学 怀孕 体外 基因 生物化学 遗传学
作者
Shaowei Wu,Qinghua Li,Xinlu Liu,Haiqin Huang,Guohui Wang,Cuijuan Zhang,Yuhan Meng,Weiwei Yang
出处
期刊:Placenta [Elsevier BV]
卷期号:137: 31-37 被引量:13
标识
DOI:10.1016/j.placenta.2023.04.006
摘要

Preeclampsia (PE) is an elusive life-threatening complication of pregnancy, and maternal endothelial dysfunction induced by components from the impaired placenta is a key hallmark of PE. Placenta-derived exosomes in maternal circulation have been correlated with risk of PE, however, the role of exosomes in PE remains to be determined. We hypothesized that placenta-released exosomes link the placental abnormalities with maternal endothelial dysfunction in PE.Circulating exosomes were collected from plasma samples of preeclamptic patients and normal pregnancies. Endothelial barrier function was examined by transendothelial electrical resistance (TEER) and cell permeability to FITC-dextran assays in human umbilical vein endothelial cells (HUVECs). miR-125b and VE-cadherin gene expression in exosomes and endothelial cells were assessed by qPCR and Western, and the possible post-transcriptional regulation of miR-125b on VE-cadherin was detected by luciferase assay.We isolated placenta-derived exosomes in the maternal circulation and found that placenta-derived exosomes from preeclamptic patients (PE-exo) leads to endothelial barrier dysfunction. We then identified decreased expression of VE-cadherin in endothelial cells contribute to the breakdown of the endothelial barrier. Further investigations revealed increased exosomal miR-125b in PE-exo directly inhibited VE-cadherin in HUVECs, thereby mediating the adverse effect of PE-exo on endothelial barrier function.Placental exosomes link impaired placentation and endothelial dysfunction, thus providing new insight into the pathophysiology of preeclampsia. Exosomal miRNAs derived from placenta contribute to the endothelial dysfunction in PE and could be a promising therapeutic target for PE.
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