首页> 美国卫生研究院文献>Antioxidants >Germinated Riceberry Rice Enhanced Protocatechuic Acid and Vanillic Acid to Suppress Melanogenesis through Cellular Oxidant-Related Tyrosinase Activity in B16 Cells
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Germinated Riceberry Rice Enhanced Protocatechuic Acid and Vanillic Acid to Suppress Melanogenesis through Cellular Oxidant-Related Tyrosinase Activity in B16 Cells

机译:发芽的稻米可增强原儿茶酸和香草酸通过B16细胞中与细胞氧化剂相关的酪氨酸酶活性来抑制黑素生成。

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摘要

The anti-melanogenic bioactivities of phytophenolic compounds have been well recognized. Riceberry rice contains a rich source of phenolic compounds that act as melanin inhibitors through their antioxidant and anti-tyrosinase properties. Germination has been shown to be an effective process to improve targeted phenolic compounds. In this study, germinated riceberry rice extract was tested for antioxidant activity. Total phenolic content was determined while the tyrosinase inhibitory effect was screened by the in vitro mushroom tyrosinase assay. Cytotoxicity of germinated riceberry rice extract was investigated in B16 cells before evaluating its activities on cellular tyrosinase, melanogenesis, melanin excretion, morphological appearance, and cellular oxidants. Germinated riceberry rice extract showed increased potency of antioxidants and was also twice as effective for mushroom tyrosinase inhibition when compared with ungerminated riceberry rice extract. In B16 cells, the extract inhibited cellular tyrosinase, melanogenesis, and cellular oxidants in a dose-dependent manner when compared with untreated cells. Germinated riceberry rice extract also displayed an effect on B16 cells morphology by reducing the number of melanin- containing cells and their dendriticity. Additionally, the germination of riceberry rice dominantly enhanced two phenolic acids, protocatechuic acid and vanillic acid, which have the potential for antioxidant-associated hyperpigmentation control. Thus, the restricted germination of riceberry rice tended to promote protocatechuic acid and vanillic acid, which dominantly displayed antioxidants and tyrosinase-related melanogenic inhibition.
机译:植物酚类化合物的抗黑色素生物活性已得到公认。 Riceberry大米中含有丰富的酚类化合物,这些酚类化合物通过其抗氧化剂和抗酪氨酸酶特性充当黑色素抑制剂。已经证明发芽是改善目标酚类化合物的有效方法。在这项研究中,测试了发芽的稻米提取物的抗氧化活性。测定总酚含量,同时通过体外蘑菇酪氨酸酶测定筛选酪氨酸酶抑制作用。在评估其对细胞酪氨酸酶,黑色素生成,黑色素排泄,形态学外观和细胞氧化剂的活性之前,在B16细胞中研究了发芽的稻米提取物的细胞毒性。与未发芽的稻米提取物相比,发芽的稻米提取物显示出更高的抗氧化剂功效,并且对蘑菇酪氨酸酶的抑制作用也提高了两倍。与未经处理的细胞相比,在B16细胞中,提取物以剂量依赖的方式抑制细胞酪氨酸酶,黑色素生成和细胞氧化剂。发芽的稻米提取物还通过减少含黑色素的细胞数量及其树突性对B16细胞形态表现出影响。此外,稻米的发芽主要增强了两种酚酸,原儿茶酸和香草酸,它们具有与抗氧化剂相关的色素沉着控制的潜力。因此,稻米的有限发芽趋向于促进原儿茶酸和香草酸,它们主要表现出抗氧化剂和酪氨酸酶相关的黑色素生成抑制作用。

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