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Enhanced Antioxidant Activity of Bioactives in Colored Grains by Nano-Carriers in Human Lens Epithelial Cells

机译:纳米载体在人晶状体上皮细胞中增强彩色谷物中生物活性物质的抗氧化活性

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摘要

The use of phytochemicals for preventing chronic diseases associated with oxidative stress such as cataracts is hindered by their low bioavailability. The effects of nano-carriers on the antioxidant activities of extracts of black rice with giant embryo (BRGEx) and soybeans (SBx) have been determined in human lens epithelial B3 cells. Scanning (SEM) and transmission electron microscopy (TEM) demonstrated that rGO (reduced graphene oxide) has a flat surface unlike GO (graphene oxide), which has a distinctive wrinkled structure with defects. UPLC analysis revealed 41.9 μg/100 g of γ-oryzanols in water extract of BRGE, and 111.8 μg /100 g of lutein, 757.7 μg/100 g of γ-tocotrienol, 4071.4 μg/100 g of γ-tocopherol in 40% ethanol extract of soybeans, respectively. Even though a low concentration of BRGEx alone did not show any antioxidant activity in B3 cells, co-treatment of BRGEx with rGO together substantially reduced hydrogen peroxide and methylglyoxal-induced DNA damage, as determined by phosphorylated γH2AX. In addition, SBx with rGO also attenuated DNA damage. Furthermore, intracellular reactive oxygen species were significantly decreased by combining extracts of these colored grains with rGO. These results suggest a potential application of nanocarriers for enhancing the bioavailability of phytochemicals.
机译:由于低生物利用度,阻碍了使用植物化学物质预防与氧化应激相关的慢性疾病,例如白内障。在人晶状体上皮B3细胞中,已经确定了纳米载体对带有大胚芽的黑米(BRGEx)和大豆(SBx)提取物的抗氧化活性的影响。扫描(SEM)和透射电子显微镜(TEM)表明,rGO(还原的氧化石墨烯)具有不同于GO(氧化石墨烯)的平坦表面,GO具有具有缺陷的独特的皱纹结构。 UPLC分析显示,在40%乙醇中,BRGE水提取物中的41.9μg/ 100 gγ-谷维素和111.8μg/ 100 g叶黄素,757.7μg/ 100 gγ-生育三烯酚,4071.4μg/ 100 gγ-生育酚在40%乙醇中大豆提取物。即使仅低浓度的BRGEx在B3细胞中也没有显示任何抗氧化活性,但BRGEx与rGO的共同处理可大大减少过氧化氢和甲基乙二醛诱导的DNA损伤,这由磷酸化的γH2AX确定。另外,带有rGO的SBx也减轻了DNA损伤。此外,通过将这些有色谷物的提取物与rGO结合,可显着降低细胞内活性氧的种类。这些结果表明纳米载体在增强植物化学物质生物利用度方面的潜在应用。

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