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Electrochemically reduced water exerts superior reactive oxygen species scavenging activity in HT1080 cells than the equivalent level of hydrogen-dissolved water

机译:电化学还原的水在HT1080细胞中具有比同等水平的氢溶解水更出色的活性氧清除能力

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摘要

Electrochemically reduced water (ERW) is produced near a cathode during electrolysis and exhibits an alkaline pH, contains richly dissolved hydrogen, and contains a small amount of platinum nanoparticles. ERW has reactive oxygen species (ROS)-scavenging activity and recent studies demonstrated that hydrogen-dissolved water exhibits ROS-scavenging activity. Thus, the antioxidative capacity of ERW is postulated to be dependent on the presence of hydrogen levels; however, there is no report verifying the role of dissolved hydrogen in ERW. In this report, we clarify whether the responsive factor for antioxidative activity in ERW is dissolved hydrogen. The intracellular ROS scavenging activity of ERW and hydrogen-dissolved water was tested by both fluorescent stain method and immuno spin trapping assay. We confirm that ERW possessed electrolysis intensity-dependent intracellular ROS-scavenging activity, and ERW exerts significantly superior ROS-scavenging activity in HT1080 cells than the equivalent level of hydrogen-dissolved water. ERW retained its ROS-scavenging activity after removal of dissolved hydrogen, but lost its activity when autoclaved. An oxygen radical absorbance capacity assay, the 2,2-diphenyl-1-picrylhydrazyl assay and chemiluminescence assay could not detect radical-scavenging activity in both ERW and hydrogen-dissolved water. These results indicate that ERW contains electrolysis-dependent hydrogen and an additional antioxidative factor predicted to be platinum nanoparticles.
机译:电解过程中,在阴极附近会产生电化学还原的水(ERW),并具有碱性pH值,含有大量溶解的氢和少量的铂纳米粒子。 ERW具有清除活性氧(ROS)的活性,最近的研究表明,溶解氢的水具有清除ROS的活性。因此,假定ERW的抗氧化能力取决于氢含量的存在;然而,没有报告证实溶解氢在ERW中的作用。在此报告中,我们阐明了ERW中抗氧化活性的响应因素是否为溶解氢。用荧光染色法和免疫自旋捕获法检测了ERW和氢溶解水的细胞内ROS清除活性。我们证实,ERW具有电解强度依赖性的细胞内ROS清除活性,并且ERW在HT1080细胞中比同等水平的氢溶解水发挥出明显优越的ROS清除活性。除去溶解的氢后,ERW保留了其ROS清除活性,但高压灭菌后失去了活性。氧自由基吸收能力测定法,2,2-二苯基-1-吡咯肼基测定法和化学发光测定法均无法检测ERW和溶解氢水中的自由基清除活性。这些结果表明,ERW包含电解依赖性氢和预计是铂纳米粒子的其他抗氧化因子。

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