University of Monastir, LR12ES05, Lab-NAFS Nutrition - Functional Food & Vascular Health, Monastir, Tunisia; University of Sousse, Faculty of Medicine Sousse, Tunisia.
Laboratoire des Interfaces et des Matériaux Avancés (LIMA), Faculté des Sciences de Monastir, Université de Monastir, Monastir, Tunisia.
Biochimie. 2018 Oct;153:210-219. doi: 10.1016/j.biochi.2018.06.027. Epub 2018 Jul 9.
Some oxysterols resulting either from enzymatic oxidation or autoxidation of cholesterol are associated with age-related diseases including neurodegenerative diseases. Among these oxysterols, 7β-hydroxycholesterol (7β-OHC) is often found at increased levels in patients. It is therefore important to identify molecules or mixtures of molecules to prevent 7β-OHC-induced side effects. Consequently, murine oligodendrocytes (158N) were cultured in the absence or presence of 7β-OHC (20 μg/mL, 24 h) with or without a natural oil extracted from sea urchin (Paracentrotus lividus) eggs known for its biological activity. Firstly, the chemical composition of this oil was determined using P NMR and GC-MS. Secondly, this oil was used to reduce 7β-OHC-induced side effects. To this end, the oil (160 μg/mL) was added to the culture medium of 158N cells 2 h before 7β-OHC. The effects of 7β-OHC with or without the oil on cell viability were studied with the MTT test. Photometric methods were used to analyze antioxidant enzyme activities, superoxide dismutase (SOD) and glutathione peroxidase (GPx), as well as the generation of lipid peroxidation products (malondialdehyde (MDA), conjugated dienes (CDs)) and protein oxidation product (carbonylated proteins (CPs)). Gas chromatography was used to determine the fatty acid profile. With 7β-OHC, an induction of cell death associated with oxidative stress (alteration of GPx and SOD activities) was observed; an overproduction of lipid peroxidation products (MDA and CDs) and CPs was also revealed. Sea urchin egg oil attenuated 7β-OHC-induced cytotoxicity: 7β-OHC-induced cell death was reduced, GPx and SOD activities were normalized, and lower levels of MDA, CDs and CPs were produced. In addition, whereas a disturbed fatty acid profile was observed with 7β-OHC, similar fatty acid profiles were found in control cells and in cells cultured with 7β-OHC associated with sea urchin egg oil. These data demonstrate the protective activities of sea urchin egg oil against 7β-OHC-induced side effects on 158N cells, supporting the concept that this oil may have benefits in the prevention of neurodegenerative diseases.
一些由胆固醇酶促氧化或自动氧化产生的氧化固醇与包括神经退行性疾病在内的与年龄相关的疾病有关。在这些氧化固醇中,7β-羟胆固醇(7β-OHC)在患者中常发现水平升高。因此,确定预防 7β-OHC 诱导的副作用的分子或分子混合物非常重要。因此,将鼠少突胶质细胞(158N)在不存在或存在 7β-OHC(20μg/ml,24 小时)的情况下进行培养,同时存在或不存在从海胆(Paracentrotus lividus)卵中提取的天然油,这种油因其生物活性而闻名。首先,使用 P NMR 和 GC-MS 确定了该油的化学成分。其次,使用该油减少 7β-OHC 诱导的副作用。为此,将油(160μg/ml)在 7β-OHC 之前 2 小时添加到 158N 细胞的培养基中。用 MTT 试验研究了 7β-OHC 与油对细胞活力的影响。使用分光光度法分析抗氧化酶活性、超氧化物歧化酶(SOD)和谷胱甘肽过氧化物酶(GPx)以及脂质过氧化产物(丙二醛(MDA)、共轭二烯(CDs))和蛋白质氧化产物(羰基化蛋白(CPs))的生成。使用气相色谱法确定脂肪酸谱。用 7β-OHC,观察到与氧化应激相关的细胞死亡诱导(GPx 和 SOD 活性改变);脂质过氧化产物(MDA 和 CDs)和 CPs 的过度产生也被揭示。海胆卵油减轻了 7β-OHC 诱导的细胞毒性:7β-OHC 诱导的细胞死亡减少,GPx 和 SOD 活性正常化,产生的 MDA、CDs 和 CPs 水平降低。此外,尽管在用 7β-OHC 观察到脂肪酸谱紊乱,但在用 7β-OHC 相关的海胆卵油培养的对照细胞和细胞中发现了类似的脂肪酸谱。这些数据表明海胆卵油对 158N 细胞 7β-OHC 诱导的副作用具有保护作用,支持了这种油在预防神经退行性疾病方面可能有益的概念。