Department of Neurology, The Second Affiliated Hospital of Zunyi Medical University, Zunyi 56300, Guizhou, China.
Nursing Department, Affiliated Hospital of Zunyi Medical University, Zunyi 56300, Guizhou, China.
Tissue Cell. 2023 Jun;82:102106. doi: 10.1016/j.tice.2023.102106. Epub 2023 May 10.
Ischemic stroke seriously endangers human health and even death. This study aimed to investigate the role of KLF10/CTRP3 in oxygen-glucose deprivation/reperfusion (OGD/R)-induced brain microvascular endothelial cells injury, as well as the regulatory effects of the Nrf2/HO-1 signaling pathway. OGD/R-induced human microvascular endothelial cells (hBMECs) were used to simulate the model of cerebral ischemia-reperfusion (I/R) injury. The expression of KLF10/CTRP3 in OGD/R-induced hBMECs as well as the transfection efficiency were all detected by RT-qPCR and western blot. The interaction of KLF10 and CTRP3 was confirmed by dual-luciferase reporter assay and chromatin immunoprecipitation (ChIP). The viability, apoptosis and endothelial permeability of OGD/R-induced hBMECs was detected by CCK-8, TUNEL and FITC-Dextran assay kit. The capacity of cell migration was assessed by wound healing assay. The expression of apoptosis related proteins, oxidative stress levels and tight junction proteins was also detected. As a result, the expression of KLF10 was increased in OGD/R-induced hBMECs and downregulation of KLF10 could promote the viability, migration and suppress the apoptosis, oxidative stress and endothelial permeability by downregulating the expression of caspase 3, Bax, cleaved PARP, ROS, MDA, and upregulating the expression of Bcl-2, SOD, GSH-Px, ZO-1, occludin, claudin-5. Nrf2/HO-1 signaling pathway was inhibited in OGD/R-induced hBMECs, which was activated by downregulation of KLF10. KLF10 was demonstrated to be combined with CTRP3 and KLF10 inhibited transcription of CTRP3 in hBMECs. The above changes affected by downregulation of KLF10 could be reversed by the interference with CTRP3. In conclusion, KLF10 knockdown improved OGD/R-induced brain microvascular endothelial cell injury and barrier dysfunction through the activation of Nrf2/HO-1 signaling pathway, which was weakened by the downregulation of CTRP3.
缺血性脑卒中严重危害人类健康,甚至危及生命。本研究旨在探讨 KLF10/CTRP3 在氧葡萄糖剥夺/复氧(OGD/R)诱导的脑微血管内皮细胞损伤中的作用,以及 Nrf2/HO-1 信号通路的调节作用。用 OGD/R 诱导的人微血管内皮细胞(hBMECs)模拟脑缺血再灌注(I/R)损伤模型。采用 RT-qPCR 和 Western blot 检测 OGD/R 诱导的 hBMECs 中 KLF10/CTRP3 的表达及转染效率。双荧光素酶报告基因检测和染色质免疫沉淀(ChIP)验证 KLF10 与 CTRP3 的相互作用。CCK-8、TUNEL 和 FITC-Dextran 试剂盒检测 OGD/R 诱导的 hBMECs 的活力、凋亡和内皮通透性。划痕愈合实验评估细胞迁移能力。检测凋亡相关蛋白、氧化应激水平和紧密连接蛋白的表达。结果显示,OGD/R 诱导的 hBMECs 中 KLF10 表达增加,下调 KLF10 可通过下调 caspase 3、Bax、cleaved PARP、ROS、MDA 表达,上调 Bcl-2、SOD、GSH-Px 表达,抑制细胞凋亡,减轻氧化应激和内皮通透性,促进细胞活力、迁移。OGD/R 诱导的 hBMECs 中 Nrf2/HO-1 信号通路被抑制,下调 KLF10 可激活该通路。KLF10 与 CTRP3 结合,下调 KLF10 可抑制 hBMECs 中 CTRP3 的转录。下调 KLF10 引起的上述变化可通过干扰 CTRP3 而逆转。综上所述,KLF10 敲低通过激活 Nrf2/HO-1 信号通路改善 OGD/R 诱导的脑微血管内皮细胞损伤和屏障功能障碍,该作用可被下调 CTRP3 所削弱。