Galasso Christian, Piscitelli Concetta, Brunet Christophe, Sansone Clementina
Marine Biotechnology Department, Stazione Zoologica Anton Dohrn, Istituto Nazionale di Biologia, Ecologia e Biotecnologie Marine, Villa Comunale, 80121 Napoli, Italy.
Int J Mol Sci. 2020 Nov 18;21(22):8707. doi: 10.3390/ijms21228707.
The antioxidant activity of natural compounds consists in their ability to modulate gene and protein expression, thus inducing an integrated cell protective response and repair processes against oxidative stress. New screening tools and methodologies are crucial for the actual requirement of new products with antioxidant activity to boost endogenous oxidative stress responsive pathways, Reactive Oxygen Species (ROS) metabolism and immune system activity, preserving human health and wellness. In this study, we performed and tested an integrated oxidative stress analysis, using DPPH assay and PNT2 cells injured with DPPH. We firstly investigated the mechanism of action of the oxidising agent (DPPH) on PNT2 cells, studying the variation in cell viability, oxidative stress genes, inflammatory mediator and ROS levels. The results reveal that DPPH activated ROS production and release of Prostaglandin E in PNT2 at low and intermediate doses, while cells switched from survival to cell death signals at high doses of the oxidising agent. This new in vitro oxidative stress model was validated by using Trolox, β-carotene and total extract of the green microalga . Only the . extract can completely counteract DPPH-induced injury, since its chemical complexity demonstrated a multilevel protecting and neutralising effect against oxidative stress in PNT2.
天然化合物的抗氧化活性在于它们调节基因和蛋白质表达的能力,从而诱导针对氧化应激的综合细胞保护反应和修复过程。新的筛选工具和方法对于开发具有抗氧化活性的新产品以增强内源性氧化应激反应途径、活性氧(ROS)代谢和免疫系统活性、维护人类健康至关重要。在本研究中,我们使用DPPH测定法和用DPPH损伤的PNT2细胞进行并测试了综合氧化应激分析。我们首先研究了氧化剂(DPPH)对PNT2细胞的作用机制,研究了细胞活力、氧化应激基因、炎症介质和ROS水平的变化。结果表明,低剂量和中等剂量的DPPH可激活PNT2细胞中ROS的产生和前列腺素E的释放,而高剂量的氧化剂会使细胞从存活信号转变为细胞死亡信号。使用Trolox、β-胡萝卜素和绿色微藻的总提取物验证了这种新的体外氧化应激模型。只有该提取物能够完全抵消DPPH诱导的损伤,因为其化学复杂性显示出对PNT2细胞氧化应激的多层次保护和中和作用。