脐静脉
可溶性fms样酪氨酸激酶-1
细胞凋亡
下调和上调
肾病
内皮功能障碍
刺激
细胞色素c
人脐静脉内皮细胞
化学
医学
内分泌学
免疫学
血管内皮生长因子
生物
内科学
糖尿病
胎盘生长因子
生物化学
体外
基因
血管内皮生长因子受体
作者
Yaling Zhai,Youxia Liu,Yuanyuan Qi,Xiaoqing Long,Jingge Gao,Xingchen Yao,Yazhuo Chen,Xin-Nian Wang,Shan Lu,Zhanzheng Zhao
出处
期刊:PLOS ONE
[Public Library of Science]
日期:2020-08-13
卷期号:15 (8): e0234492-e0234492
被引量:14
标识
DOI:10.1371/journal.pone.0234492
摘要
Endothelial injury is a common manifestation in IgA nephropathy (IgAN). After the previous identification of the upregulated soluble fms-like tyrosine kinase-1 (sFlt-1) correlated with endothelial injury in IgAN, in the present study, we further explored the role of sFlt-1 in endothelial injury in IgAN. We enrolled 72 patients with IgAN and detected the sFlt-1 levels. The polymeric IgA1 (pIgA1) complexes were isolated from the pooled plasma samples of another 10 patients with IgAN. Apoptosis proteins were detected in cultured human umbilical vein endothelial cells (HUVECs) with the stimulation of recombinant sFlt-1 or the caspase-9 inhibitor Z-LEHD-FMK. We identified there were positive correlations between sFlt-1 and IgA-IgG complex as well as vWF levels in patients with IgAN. The sFlt-1 levels in HUVECs were significantly upregulated by pIgA1 complex derived from IgAN patients in a concentration-dependent manner. The proliferation ability of HUVECs was damaged when stimulated with sFlt-1 protein in a time- and dose- dependent manner. And the apoptosis rate was up-regulated significantly as the stimulation concentrations of sFlt-1 increased. We found sFlt-1 challenge could significantly increase the expression of vWF. In addition, sFlt-1 increased the levels of caspase-9, caspase-3, Bax and mitochondrial membrane potential; facilitated the release of cytochrome C from mitochondria to cytoplasma. In contrast, Z-LEHD-FMK attenuated high sFlt-1-induced HUVECs apoptosis. In conclusion, our study demonstrated that sFlt-1 expression was up-regulated by the challenge of pIgA1 complex derived from patients with IgAN. Furthermore, increased sFlt-1 facilitated human umbilical vein endothelial cells apoptosis via the mitochondrial-dependent pathway.
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