Department of Biotechnology, Jaypee Institute of Information Technology, Noida, Uttar Pradesh, India.
J Pharm Pharmacol. 2018 Nov;70(11):1531-1540. doi: 10.1111/jphp.12993. Epub 2018 Aug 2.
To examine the neuroprotective property of triterpenoid glycoside saponins of Bacopa monnieri (L.) Wettst. bacoside A and its components against H O -induced oxidative stress on neuronal (N2a) cells.
The cytoprotective effects of individual bacoside A components were evaluated towards oxidative stressed neuronal cells. Bacoside A was screened for neuronal cell viability (MTT assay) and change in intracellular reactive oxygen species (ROS), anti-apoptotic properties and mitochondrial membrane potential (MMP) using fluorescence microscopy.
Different bacoside A components showed decrease in N2a cell viability below 100 (%) after bacoside A concentration of 0.4 mg/ml. Further, cytoprotective effect of optimized dose of bacoside A was analysed for alleviating oxidative stressed, apoptosis and MMP in H O stressed neuronal cells. Results showed increase in MMP, and decrease in apoptotic induction, without much change in nuclear integrity in stressed neuronal cells. Results showed bacoside A3 and bacopaside II have comparatively higher cytoprotective ability whilst isomer of bacopasponin C, bacopasaponin C and mixture showed comparatively less response.
Amongst four different bacoside A components, bacoside A3 and bacopaside II showed comparatively higher neuroprotective response analysed as higher cell viability and decreased intracellular ROS, suggesting better regulation of cyto-(neuronal) protection of N2a cells.
研究益智(L.) Wettst 的三萜糖苷皂甙巴考苷 A 及其成分对 H O 诱导的神经(N2a)细胞氧化应激的神经保护作用。
评估了巴考苷 A 的各个成分对氧化应激神经细胞的细胞保护作用。使用荧光显微镜筛选巴考苷 A 对神经细胞活力(MTT 测定)和细胞内活性氧(ROS)变化、抗凋亡特性和线粒体膜电位(MMP)的影响。
巴考苷 A 浓度为 0.4mg/ml 后,不同的巴考苷 A 成分使 N2a 细胞活力降低至 100%以下。此外,还分析了优化剂量的巴考苷 A 对 H O 应激神经细胞减轻氧化应激、凋亡和 MMP 的作用。结果表明,MMP 增加,凋亡诱导减少,应激神经细胞的核完整性变化不大。结果表明,巴考苷 A3 和巴考沙宾 II 具有相对较高的细胞保护能力,而巴考沙宾 C 的异构体、巴考沙宾 C 和混合物的反应相对较弱。
在四种不同的巴考苷 A 成分中,巴考苷 A3 和巴考沙宾 II 表现出相对较高的神经保护反应,表现为较高的细胞活力和减少的细胞内 ROS,表明对 N2a 细胞的细胞(神经)保护有更好的调节作用。