Department of Spine Surgery, The Xiangya Hospital of Central-South University, Changsha City, Hunan Province, China.
Hunan Engineering Laboratory of Advanced Artificial Osteo-materials, Changsha City, Hunan Province, China.
Connect Tissue Res. 2022 Nov;63(6):634-649. doi: 10.1080/03008207.2022.2060826. Epub 2022 May 22.
This study investigated the molecular mechanism of whether hUC-MSCs-EVs repressed PTEN expression and activated the PI3K/AKT pathway through miR-29b-3p, thus inhibiting LPS-induced neuronal injury.
hUC-MSCs were cultured and then identified. Cell morphology was observed. Alizarin red, oil red O, and alcian blue staining were used for inducing osteogenesis, adipogenesis, and chondrogenesis. EVs were extracted from hUC-MSCs and identified by transmission electron microscope observation and Western blot. SCI neuron model was established by 24h lipopolysaccharide (LPS) induction. After the cells were cultured with EVs without any treatment, uptake of EVs by SCI neurons, miR-29b-3p expression, cell viability, apoptosis, caspase-3, cleaved caspase-3, caspase 9, Bcl-2, PTEN, PI3K, AKT, and p-Akt protein levels, caspase 3 and caspase 9 activities, and inflammatory factors IL-6 and IL-1β levels were detected by immunofluorescence labeling, RT-qPCR, MTT, flow cytometry, Western blot, caspase 3 and caspase 9 activity detection kits, and ELISA. The binding sites between PTEN and miR-29b-3p were predicted by the database and verified by dual-luciferase assay.
LPS-induced SCI cell model was successfully established, and hUC-MSCs-EVs inhibited LPS-induced apoptosis of injured spinal cord neurons. EVs transferred miR-29b-3p into LPS-induced injured neurons. miR-29b-3p silencing reversed EV effects on reducing LPS-induced neuronal apoptosis. miR-29b-3p reduced LPS-induced neuronal apoptosis by targeting PTEN. After EVs-miR-inhi and si-PTEN treatment, inhibition of the PI3K/AKT pathway reversed hUC-MSCs-EVs effects on reducing LPS-induced neuronal apoptosis.
hUC-MSCs-EVs activated the PI3K/AKT pathway by carrying miR-29b-3p into SCI neurons and silencing PTEN, thus reducing neuronal apoptosis.
本研究旨在探讨 hUC-MSCs-EVs 是否通过 miR-29b-3p 抑制 PTEN 表达并激活 PI3K/AKT 通路,从而抑制 LPS 诱导的神经元损伤,从而阐明其分子机制。
培养 hUC-MSCs 并进行鉴定。观察细胞形态。用茜素红、油红 O 和阿利新蓝染色诱导成骨、成脂和成软骨。透射电镜观察和 Western blot 提取 hUC-MSCs 中的 EVs 并进行鉴定。通过 24 小时脂多糖 (LPS) 诱导建立 SCI 神经元模型。在未进行任何处理的情况下,将 EVs 培养于 SCI 神经元中,通过免疫荧光标记、RT-qPCR、MTT、流式细胞术、Western blot、caspase 3 和 caspase 9 活性检测试剂盒和 ELISA 检测 EVs 摄取、miR-29b-3p 表达、细胞活力、细胞凋亡、caspase-3、cleaved caspase-3、caspase 9、Bcl-2、PTEN、PI3K、AKT 和 p-Akt 蛋白水平、caspase 3 和 caspase 9 活性以及炎症因子 IL-6 和 IL-1β 水平。通过数据库预测 PTEN 和 miR-29b-3p 的结合位点,并通过双荧光素酶报告基因实验进行验证。
成功建立了 LPS 诱导的 SCI 细胞模型,hUC-MSCs-EVs 抑制了 LPS 诱导的损伤脊髓神经元凋亡。EVs 将 miR-29b-3p 转染至 LPS 诱导的损伤神经元中。miR-29b-3p 沉默逆转了 EVs 减少 LPS 诱导的神经元凋亡的作用。miR-29b-3p 通过靶向 PTEN 减少 LPS 诱导的神经元凋亡。在 EVs-miR-inhi 和 si-PTEN 处理后,抑制 PI3K/AKT 通路逆转了 hUC-MSCs-EVs 减少 LPS 诱导的神经元凋亡的作用。
hUC-MSCs-EVs 通过携带 miR-29b-3p 进入 SCI 神经元并沉默 PTEN 激活 PI3K/AKT 通路,从而减少神经元凋亡。