Department of Rehabilitation Medicine, Qujing No. 1 Hospital, Qujing, Yunnan, China.
Gen Physiol Biophys. 2024 Mar;43(2):175-183. doi: 10.4149/gpb_2023038.
The aim of this study was to investigate the molecular mechanism by which miR-497-5p regulates neuronal injury after ischemic stroke through the BDNF/TrkB/Akt signaling pathway. PC12 cells were used to construct a stroke injury model by oxygen-glucose deprivation/reoxygenation (OGD/R). The expression level of miR-497-5p was measured by RT-qPCR. CCK-8 kit was used to detect cell viability. Cell apoptosis and reactive oxygen species (ROS) were detected by flow cytometry. MDA and SOD detection kits were used to detect MDA content and SOD activity. A double luciferase reporter system was used to verify the targeting relationship between miR-497-5p and BDNF. The expression of BDNF, TrkB, p-TrkB, Akt and p-Akt was detected by Western blot. We have found that miR-497-5p expression was inhibited after treatment with OGD/R. Simultaneously, cell apoptosis, MDA content and ROS were upregulated, while cell viability and SOD were significantly decreased in PC12 cells. The effects of OGD/R on PC12 cells were reversed with the downregulation of miR-497-5p. A double luciferase reporter assay demonstrated that miR-497-5p negatively targets BDNF. BDNF inhibited cell apoptosis and oxidative stress injury in PC12 cells. These findings suggest that miR-497-5p aggravates neuronal injury in experimental model of ischemic stroke by inhibiting the BDNF/TrkB/PI3K/Akt signaling pathway.
本研究旨在探讨 miR-497-5p 通过 BDNF/TrkB/Akt 信号通路调节缺血性脑卒中后神经元损伤的分子机制。使用 PC12 细胞通过氧葡萄糖剥夺/复氧 (OGD/R) 构建脑卒中损伤模型。通过 RT-qPCR 测量 miR-497-5p 的表达水平。使用 CCK-8 试剂盒检测细胞活力。通过流式细胞术检测细胞凋亡和活性氧 (ROS)。使用 MDA 和 SOD 检测试剂盒检测 MDA 含量和 SOD 活性。使用双荧光素酶报告系统验证 miR-497-5p 与 BDNF 之间的靶向关系。通过 Western blot 检测 BDNF、TrkB、p-TrkB、Akt 和 p-Akt 的表达。我们发现 OGD/R 处理后 miR-497-5p 的表达受到抑制。同时,PC12 细胞中的细胞凋亡、MDA 含量和 ROS 上调,而细胞活力和 SOD 明显降低。miR-497-5p 的下调逆转了 OGD/R 对 PC12 细胞的影响。双荧光素酶报告实验表明,miR-497-5p 负向靶向 BDNF。BDNF 抑制了 PC12 细胞中的细胞凋亡和氧化应激损伤。这些发现表明,miR-497-5p 通过抑制 BDNF/TrkB/PI3K/Akt 信号通路加重缺血性脑卒中实验模型中的神经元损伤。