Department for Sustainable Development and Ecological Transition Laboratory of Physiology, Via Sant Eusebio 37, Vercelli (VC) 13100, Italy.
Noivita S.r.l.s. UPO Spin-Off of University of Eastern Piedmont, Via Solaroli 17, Novara (NO) 28100, Italy.
Oxid Med Cell Longev. 2024 Oct 1;2024:7465045. doi: 10.1155/2024/7465045. eCollection 2024.
During ageing, the brain is vulnerable to a growing imbalance of the antioxidant defence system, resulting in increased oxidative stress. This condition may be mainly responsible for cognitive decline, resulting in synaptic transmission disruptions and the onset of neuronal dysfunction. In this context, developing efficient preventive and therapeutic strategies against increased oxidative stress and decreased antioxidant defence mechanisms should be considered a public health priority to promote healthy ageing. Therefore, the current study explored the benefits of a novel combination of green tea, saffron, trans-Reveratrol, and citicoline, called MIX, on improving intracellular processes to ameliorate the mechanisms linked to cognitive decline under oxidative stress conditions. First, the ability of MIX to cross the blood-brain barrier (BBB) was evaluated in an model, analysing TEER value and the specific tight junctions; second, the CCF-STTG1 cell line was pretreated with 200 M HO for 30 min to explore the effects of the single active compounds and their combination under oxidative stress conditions. Our results demonstrated for the first time the synergistic effects of the new combination to improve the absorption rate of individual agents through the BBB and maintain its integrity. Subsequently, further research was done to assess the positive role of the combination to counteract oxidative damage; as expected, MIX restored the neurodegenerative state activated by 200 M HO, reducing mitochondrial damage, and improving survival pathways. Additionally, MIX acted as a regulator of both cellular energy metabolism and apoptosis, reducing the inflammatory state activated by oxidative stress. Finally, MIX can balance neurotrophin production to prevent mitochondrial disruption. In conclusion, MIX counteracted the adverse effects of brain oxidative stress, suggesting that this new proposed formulation prevents the molecular mechanisms underlying the onset of cognitive decline, even in support of conventional therapy.
随着年龄的增长,大脑容易出现抗氧化防御系统失衡,导致氧化应激增加。这种情况可能是认知能力下降的主要原因,导致突触传递中断和神经元功能障碍。在这种情况下,开发针对氧化应激增加和抗氧化防御机制减少的有效预防和治疗策略,应被视为促进健康老龄化的公共卫生重点。因此,本研究探讨了一种新型绿茶、藏红花、反式白藜芦醇和胞磷胆碱混合物(MIX)改善细胞内过程的益处,以改善氧化应激条件下与认知能力下降相关的机制。首先,在一个模型中评估了 MIX 穿过血脑屏障(BBB)的能力,分析了 TEER 值和特定的紧密连接;其次,用 200 μM HO 预处理 CCF-STTG1 细胞系,以研究单个活性化合物及其组合在氧化应激条件下的作用。我们的结果首次证明了新组合通过 BBB 提高个体药物吸收率并保持其完整性的协同作用。随后,进一步研究评估了该组合在对抗氧化损伤方面的积极作用;正如预期的那样,MIX 恢复了 200 μM HO 激活的神经退行性状态,减少了线粒体损伤,并改善了生存途径。此外,MIX 作为细胞能量代谢和细胞凋亡的调节剂,降低了氧化应激激活的炎症状态。最后,MIX 可以平衡神经营养因子的产生,以防止线粒体破坏。总之,MIX 对抗了大脑氧化应激的不利影响,表明这种新提出的配方可以预防认知能力下降的分子机制,甚至可以支持常规治疗。