Department of Geriatrics, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, Hubei, China (mainland).
Department of Neurology, Zhumadian Zhongxin Hospital, Zhumadian, Henan, China (mainland).
Med Sci Monit. 2017 Sep 29;23:4665-4667. doi: 10.12659/msm.902470.
BACKGROUND Hypoxic preconditioning may be a key influence on functions of endothelial progenitor cells (EPCs). MATERIAL AND METHODS To investigate the role and mechanism of the Notch-Jagged1 pathway on endothelial progenitor cells in hypoxic preconditioning, endothelial progenitor cells were randomly allocated into 5 groups: 1 Normoxic control group; 2 Hypoxic blank group; 3 Hypoxic+25 μM DAPT group; 4 Hypoxic+50 μM DAPT group; 5 Hypoxic+100 μM DAPT group. After reoxygenation, protein and mRNA levels of Jagged1 were measured by Western blot and quantitative RT-PCR. The MTT test was used to assess proliferation. ELISA was used to measure NO and VEGF secretion. RESULTS Hypoxic preconditioning treatment significantly upregulated both protein and mRNA levels of Jagged1 in endothelial progenitor cells. It also enhanced proliferation ability and elevated secretion of NO and VEGF. Furthermore, after blocking the Notch pathway by using DAPT, Jagged1 expression and EP proliferation, migration, and secretion of NO and VEGF were decreased in a dose-dependent manner. CONCLUSIONS Our results suggest the Notch-Jagged1 pathway enhances EPCs proliferation and secretion ability during hypoxic preconditioning.
低氧预处理可能对内皮祖细胞(EPCs)的功能有重要影响。
为了研究 Notch-Jagged1 通路在低氧预处理的内皮祖细胞中的作用及机制,将内皮祖细胞随机分为 5 组:1. 常氧对照组;2. 低氧空白组;3. 低氧+25μM DAPT 组;4. 低氧+50μM DAPT 组;5. 低氧+100μM DAPT 组。再复氧后,通过 Western blot 和定量 RT-PCR 检测 Jagged1 的蛋白和 mRNA 水平。MTT 试验用于评估增殖。ELISA 用于测量 NO 和 VEGF 的分泌。
低氧预处理显著上调内皮祖细胞中 Jagged1 的蛋白和 mRNA 水平。它还增强了增殖能力,提高了 NO 和 VEGF 的分泌。此外,通过使用 DAPT 阻断 Notch 通路后,Jagged1 表达以及 EP 的增殖、迁移以及 NO 和 VEGF 的分泌呈剂量依赖性降低。
我们的结果表明,Notch-Jagged1 通路在低氧预处理期间增强了 EPCs 的增殖和分泌能力。