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首页> 外文期刊>Progress in Artificial Intelligence >Biological Redox Impact of Tocopherol Isomers Is Mediated by Fast Cytosolic Calcium Increases in Living Caco-2 Cells
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Biological Redox Impact of Tocopherol Isomers Is Mediated by Fast Cytosolic Calcium Increases in Living Caco-2 Cells

机译:生物氧化铈异构体的生物氧化还原效果是通过活性Caco-2细胞的快速细胞溶质钙介导的

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Most of the biological impacts of Vitamin E, including the redox effects, have been raised from studies with alpha-tocopherol only, despite the fact that tocopherol-containing foods carry mixed tocopherol isomers. Here, we investigated the cellular mechanisms involved in the immediate antioxidant responses evoked by alpha-, gamma- and delta-tocopherol in Caco-2 cells. In order to track the cytosolic redox impact, we performed imaging on cells expressing HyPer, a fluorescent redox biosensor, while cytosolic calcium fluctuations were monitored by means of Fura-2 dye and imaging. With this approach, we could observe fast cellular responses evoked by the addition of alpha-, gamma- and delta-tocopherol at concentrations as low as 2.5 mu M. Each isomer induced rapid and consistent increases in cytosolic calcium with fast kinetics, which were affected by chelation of extracellular Ca2+, suggesting that tocopherols promoted a calcium entry upon the contact with the plasma membrane. In terms of redox effects, delta-tocopherol was the only isomer that evoked a significant change in the HyPer signal at 5 mu M. By mimicking Ca2+ entry with ionomycin and monensin, a decline in the HyPer signal was induced as well. Finally, by silencing calcium with 1,2-bis(o-aminophenoxy)ethane-N,N,N ',N '-tetraacetic acid (BAPTA), an intracellular Ca2+ chelator, none of the isomers were able to induce redox changes. Altogether, our data indicate that an elevation in cytoplasmic Ca2+ is necessary for the development of a tocopherol-induced antioxidant impact on the cytoplasm of Caco-2 cells reported by HyPer biosensor.
机译:维生素E的大多数生物学影响,包括氧化还原效应,只有在α-生育酚的研究中提出,尽管含生育酚的食物携带混合生育酚异构体。在这里,我们研究了Caco-2细胞中α,γ-和δ-生育酚引起的立即抗氧化反应的细胞机制。为了跟踪细胞溶质氧化还原的影响,我们对表达HEAD的细胞进行成像,荧光氧化还原生物传感器,而通过FURA-2染料和成像监测细胞溶胶钙波动。通过这种方法,我们可以观察到通过在低至2.5μm的浓度下加入α,γ-和δ-生育酚诱捕的快速细胞反应。每种异构体诱导的胞质钙诱导的胞质钙快速和一致,受到影响的快速动力学通过螯合细胞外CA2 +,表明生育酚在与质膜接触时促进钙入口。在氧化还原效应方面,δ-生育酚是唯一的异构体,其诱发5μmmm的超信号的显着变化。通过使用离子霉素和宫蛋白模拟Ca2 +进入,也诱导超信号的下降。最后,通过用1,2-双(O-氨基苯氧基)乙烷-N,N,N',N'-立乙酸(Bapta),细胞内Ca 2 +螯合剂的沉默钙,没有异构体能够诱导氧化还原的变化。完全,我们的数据表明细胞质CA2 +的升高是对由异性体传感器报道的Caco-2细胞的细胞质上的生育酚诱导的抗氧化抗抗氧化症是必要的。

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