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Antioxidant Properties of Fullerene Derivatives Depend on Their Chemical Structure: A Study of Two Fullerene Derivatives on HELFs

机译:富勒烯衍生物的抗氧化性能取决于其化学结构:对Helfs上两种富勒烯衍生物的研究

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Oxidative stress is a major issue in a wide number of pathologies (neurodegenerative, cardiovascular, immune diseases, and cancer). Because of this, the search for new antioxidants is an important issue. One of the potential antioxidants that has been enthusiastically discussed in the past twenty years is fullerene and its derivatives. Although in aqueous solutions fullerene derivatives have shown to be antioxidants, their properties in this regard within the cells are controversially discussed. We have studied two different water-soluble fullerene C60 and C70 derivatives on human embryonic lung fibroblasts at a wide range of concentrations. Both of them cause a decrease in cellular ROS at short times of incubation (1 hour). Their prolonged action, however, is fundamentally different: derivative GI-761 causes secondary oxidative stress whereas derivative VI-419-P3K keeps ROS levels under control values. To gain a better understanding of this effect, we assessed factors that could play a role in the response of cells to fullerene derivatives. Increased ROS production occurred due to NOX4 upregulation by GI-761. Derivative VI-419-P3K activated the transcription of antioxidant master regulator NRF2 and caused its translocation to the nucleus. This data suggests that the antioxidant effect of fullerene derivatives depends on their chemical structure.
机译:氧化应激是广泛病理(神经变性,心血管,免疫疾病和癌症)的主要问题。因此,寻找新的抗氧化剂是一个重要问题。在过去二十年中热情讨论的潜在抗氧化剂之一是富勒烯及其衍生物。虽然在水溶液中富勒烯衍生物已经显示为抗氧化剂,但它们在细胞内的其性质进行了争议。在广泛的浓度下,我们研究了两种不同的水溶性富勒烯C60和C70衍生物,在人胚胎肺成纤维细胞上。它们中的两者都会导致孵育短次(1小时)的细胞ROS降低。然而,它们的延长作用是根本不同的:衍生物GI-761导致二次氧化应激,而衍生物VI-419-P3K在控制值下保持ROS水平。为了更好地理解这种效果,我们评估了可能在细胞对富勒烯衍生物的反应中发挥作用的因素。由于GI-761的NOX4上调,因此发生了增加的ROS生产。衍生物VI-419-P3K活化抗氧化母稳压器NRF2的转录,并导致其易位与细胞核。该数据表明富勒烯衍生物的抗氧化效果取决于其化学结构。

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