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New insights into the antioxidant activity of hydroxycinnamic and hydroxybenzoic systems: Spectroscopic, electrochemistry, and cellular studies

机译:羟基肉桂酸和羟基苯甲酸系统抗氧化活性的新见解:光谱学,电化学和细胞研究

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A series hydroxycinnamic and gallic acids and their derivatives were studied with the aim of evaluating their in vitro antioxidant properties both in homogeneous and in cellular systems. It was concluded from the oxygen radical absorbance capacity-fluorescein (ORAC-FL), 1,1-diphenyl-2-picrylhydrazyl (DPPH), and cyclic voltammetry data that some compounds exhibit remarkable antioxidant properties. In general, in homogeneous media (DPPH assay), galloyl-based cinnamic and benzoic systems (compounds 7-11) were the most active, exhibiting the lowest oxidation potentials in both dimethyl sulfoxide (DMSO) and phosphate buffer. Yet, p-coumaric acid and its derivatives (compounds 1-3) disclosed the highest scavenging activity toward peroxyl radicals (ORAC-FL assay). Interesting structure-property-activity relationships between ORAC-FL, or DPPH radical, and redox potentials have been attained, showing that the latter parameter can be a valuable antioxidant measure. It was evidenced that redox potentials are related to the structural features of cinnamic and benzoic systems and that their activities are also dependent on the radical generated in the assay. Electron spin resonance data of the phenoxyl radicals generated both in DMSO and phosphate buffer support the assumption that radical stability is related to the type of phenolic system. Galloyl-based cinnamic and benzoic ester-type systems (compounds 9 and 11) were the most active and effective compounds in cell-based assays (51.13. 1.27% and 54.90. 3.65%, respectively). In cellular systems, hydroxycinnamic and hydroxybenzoic systems operate based on their intrinsic antioxidant outline and lipophilic properties, so the balance between these two properties is considered of the utmost importance to ensure their performance in the prevention or minimization of the effects due to free radical overproduction.
机译:研究了一系列羟基肉桂酸和没食子酸及其衍生物,以评估它们在均相和细胞系统中的体外抗氧化性能。由氧自由基吸收能力-荧光素(ORAC-FL),1,1-二苯基-2-甲基苯并肼(DPPH)和循环伏安法数据得出结论,某些化合物具有显着的抗氧化性能。通常,在均相介质(DPPH测定)中,基于没食子酰基的肉桂酸酯和苯甲酸体系(化合物7-11)活性最高,在二甲基亚砜(DMSO)和磷酸盐缓冲液中的氧化电位最低。然而,对香豆酸及其衍生物(化合物1-3)显示出对过氧自由基的最高清除活性(ORAC-FL分析)。已经获得了ORAC-FL或DPPH自由基与氧化还原电势之间有趣的结构-性质-活性关系,表明后一个参数可以作为有价值的抗氧化剂措施。已证明氧化还原电势与肉桂酸和苯甲酸系统的结构特征有关,并且它们的活性还取决于测定中产生的自由基。在DMSO和磷酸盐缓冲液中生成的苯氧基自由基的电子自旋共振数据支持以下假设:自由基稳定性与酚类系统的类型有关。基于没食子酰基的肉桂酸酯和苯甲酸酯类系统(化合物9和11)是基于细胞的测定法中活性最高,最有效的化合物(分别为51.13。1.27%和54.90。3.65%)。在细胞体系中,羟基肉桂酸和羟基苯甲酸体系基于其固有的抗氧化剂轮廓和亲脂性而起作用,因此,考虑到确保防止自由基过量产生的影响或防止其性能的降低,这两种性能之间的平衡至关重要。

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