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Cytoprotective Mechanisms Mediated by Polyphenols from Chilean Native Berries against Free Radical-Induced Damage on AGS Cells

机译:智利本土浆果多酚介导的抗AGS细胞自由基诱导的细胞保护机制

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摘要

The prevalence of cytoprotective mechanisms induced by polyphenols such as activation of intracellular antioxidant responses (ICM) and direct free radical scavenging was investigated in native Chilean species of strawberries, raspberries, and currants. Human gastric epithelial cells were co- and preincubated with polyphenolic-enriched extracts (PEEs) from Chilean raspberries (Rubus geoides), strawberries (Fragaria chiloensis ssp. chiloensis f. chiloensis), and currants (Ribes magellanicum) and challenged with peroxyl and hydroxyl radicals. Cellular protection was determined in terms of cell viability, glyoxalase I and glutathione s-transferases activities, and carboxymethyl lysine (CML) and malondialdehyde levels. Our results indicate that cytoprotection induced by ICM was the prevalent mechanism for Rubus geoides and F. chiloensis. This agreed with increased levels of glyoxalase I and glutathione S-transferase activities in cells preincubated with PEEs. ORAC index indicated that F. chiloensis was the most efficient peroxyl radical scavenger. Moreover, ICM mediated by F. chiloensis was effective in protecting cells from CML accumulation in contrast to the protective effects induced by free radical scavenging. Our results indicate that although both polyphenol-mediated mechanisms can exert protective effects, ICM was the most prevalent in AGS cells. These results suggest a potential use of these native berries as functional food.
机译:在智利本土的草莓,树莓和黑醋栗物种中,研究了多酚诱导的细胞保护机制的普遍性,例如细胞内抗氧化剂反应(ICM)的活化和直接自由基清除。将人胃上皮细胞与来自智利覆盆子(Rubus geoides),草莓(Fragaria chiloensis ssp。chiloensis f。chiloensis)和黑醋栗(Ribes magellanicum)的富含多酚的提取物(PEE)共培养并预孵育,并用过氧化物和羟自由基攻击。根据细胞活力,乙二醛酶I和谷胱甘肽S-转移酶活性以及羧甲基赖氨酸(CML)和丙二醛水平确定细胞保护作用。我们的研究结果表明,ICM诱导的细胞保护作用是大叶悬钩子和Chiloensis的普遍机制。这与在用PEE预孵育的细胞中乙二醛酶I和谷胱甘肽S-转移酶活性的升高相一致。 ORAC指数表明,Chiloensis是最有效的过氧自由基清除剂。此外,与由自由基清除引起的保护作用相反,由F. chiloensis介导的ICM可有效保护细胞免于CML积累。我们的结果表明,尽管两种多酚介导的机制均可发挥保护作用,但ICM在AGS细胞中最为普遍。这些结果表明这些天然浆果作为功能食品的潜在用途。

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