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A Proteomic Approach to Uncover Neuroprotective Mechanisms of Oleocanthal against Oxidative Stress

机译:一种蛋白质组学方法,以揭示大黄对氧化应激的大肠神经防治机制

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摘要

Neurodegenerative diseases represent a heterogeneous group of disorders that share common features like abnormal protein aggregation, perturbed Ca2+ homeostasis, excitotoxicity, impairment of mitochondrial functions, apoptosis, inflammation, and oxidative stress. Despite recent advances in the research of biomarkers, early diagnosis, and pharmacotherapy, there are no treatments that can halt the progression of these age-associated neurodegenerative diseases. Numerous epidemiological studies indicate that long-term intake of a Mediterranean diet, characterized by a high consumption of extra virgin olive oil, correlates with better cognition in aged populations. Olive oil phenolic compounds have been demonstrated to have different biological activities like antioxidant, antithrombotic, and anti-inflammatory activities. Oleocanthal, a phenolic component of extra virgin olive oil, is getting more and more scientific attention due to its interesting biological activities. The aim of this research was to characterize the neuroprotective effects of oleocanthal against H2O2-induced oxidative stress in neuron-like SH-SY5Y cells. Moreover, protein expression profiling, combined with pathways analyses, was used to investigate the molecular events related to the protective effects. Oleocanthal was demonstrated to counteract oxidative stress, increasing cell viability, reducing reactive oxygen species (ROS) production, and increasing reduced glutathione (GSH) intracellular level. Proteomic analysis revealed that oleocanthal significantly modulates 19 proteins in the presence of H2O2. In particular, oleocanthal up-regulated proteins related to the proteasome, the chaperone heat shock protein 90, the glycolytic enzyme pyruvate kinase, and the antioxidant enzyme peroxiredoxin 1. Moreover, oleocanthal protection seems to be mediated by Akt activation. These data offer new insights into the molecular mechanisms behind oleocanthal protection against oxidative stress.
机译:神经变性疾病代表一组异质性疾病的共享公共功能,如异常蛋白聚集,扰动钙稳态,兴奋性中毒,线粒体功能,凋亡,炎症障碍,和氧化应激。尽管生物标志物,早期诊断,和药物的研究进展,有没有治疗方法可以制止这些与年龄有关的神经退行性疾病的进展。大量流行病学研究表明地中海饮食,长期摄入,其特点是特级初榨橄榄油,关联的高消耗与老年人口更好的认知。橄榄油酚类化合物已被证实具有抗氧化剂等,抗血栓形成,和抗炎活性的不同的生物活性。 Oleocanthal,特级初榨橄榄油的酚类成分,是越来越多的科学的关注,因为它有趣的生物学活性。这项研究的目的是表征神经元样SH-SY5Y细胞oleocanthal的对过氧化氢诱导的氧化应激的神经保护作用。此外,蛋白质表达谱,与通路相结合分析中,被用于研究有关的保护作用的分子事件。 Oleocanthal被证明抵消氧化应激,增加细胞活力,减少活性氧(ROS)的产生,并提高还原型谷胱甘肽(GSH)细胞内水平。蛋白质组学分析表明,oleocanthal显著调节19种蛋白在过氧化氢的存在。特别地,oleocanthal上调的相关的蛋白酶体,分子伴侣热休克蛋白90,所述糖酵解酶丙酮酸激酶蛋白,和抗氧化剂酶过氧化物酶1。此外,保护oleocanthal似乎是由Akt激活来介导。这些数据提供了新的见解背后对抗氧化应激oleocanthal保护的分子机制。

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