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Antioxidant activities of nano-bubble hydrogen-dissolved water assessed by ESR and 2,2'-bipyridyl methods

机译:ESR和2,2'-联吡啶法评估纳米气泡氢溶解水的抗氧化活性

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摘要

We prepared nano-bubble hydrogen-dissolved water (nano-H water) which contained hydrogen nano-bubbles of <717-nm diameter for 54% of total bubbles. In the DMPO-spin trap electron spin resonance (ESR) method, the DMPO-OH:MnO ratio, being attributed to amounts of hydroxyl radicals (•OH), was 2.78 for pure water (dissolved hydrogen [DH] ≤ 0.01 ppm, oxidation-reduction potential [ORP] = +324 mV), 2.73 for tap water (0.01 ppm, +286 mV), 2.93 for commercially available hydrogen water (0.075 ppm, +49 mV), and 2.66 for manufactured hydrogen water (0.788 ppm, -614 mV), whereas the nano-H water (0.678 ppm, -644 mV) exhibited 2.05, showing the superiority of nano-H water to other types of hydrogen water in terms of •OH-scavenging activity. Then, the reduction activity of nano-H water was assessed spectrophotometrically by the 2,2'-bipyridyl method. Differential absorbance at 530 nm was in the order: 0.018 for pure water, 0.055 for tap water, 0.079 for nano-H water, 0.085 for commercially available hydrogen water, and 0.090 for manufactured hydrogen water, indicating a prominent reduction activity of hydrogen water and nano-H water against oxidation in ascorbate-coupled ferric ion-bipyridyl reaction. Thus, nano-H water has an improved antioxidant activity as compared to hydrogen water of similar DH-level. indicating the more marked importance of nano-bubbles rather than the concentration of hydrogen in terms of •OH-scavenging.
机译:我们制备了纳米气泡的氢溶解水(nano-H水),其中含有小于717nm直径的氢纳米气泡,占总气泡的54%。在DMPO自旋陷阱电子自旋共振(ESR)方法中,纯水的DMPO-OH:MnO之比为羟基自由基(•OH)的量,为2.78(溶解氢[DH]≤0.01 ppm,氧化-还原电位[ORP] = +324 mV),自来水的2.73(0.01 ppm,+ 286 mV),市售的氢水(0.075 ppm,+ 49 mV)为2.93和人造氢的水(0.788 ppm,2.64) -614 mV),而纳米H水(0.678 ppm,-644 mV)显示2.05,就清除•OH而言,纳米H水优于其他类型的氢水。然后,通过2,2'-联吡啶法分光光度法评价了纳米H水的还原活性。在530 nm处的吸光度差顺序为:纯水0.018,自来水0.055,纳米H水0.079,市售氢水0.085和人造氢0.090,表明氢水的还原活性显着。纳米氢水在抗坏血酸偶联的三价铁离子联吡啶反应中抗氧化。因此,与具有相似DH水平的氢水相比,纳米H水具有改善的抗氧化活性。这表明纳米气泡的重要性更为明显,而不是氢在•OH清除方面的浓度。

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  • 来源
    《Materials science & engineering》 |2015年第8期|7-10|共4页
  • 作者单位

    Laboratory of Cell-Death Control BioTechnology, Faculty of Life and Environmental Sciences, Prefectural University of Hiroshima, Nanatsuka 562, Shobara, Hiroshima 727-0023, Japan,Radio Isotope Facilities for Medical Science, Life Science Research Center, Mie University, Edobashi 2-174, Tsu, Mie 514-8507, Japan;

    -600 mV Co., Ltd. Matsuhama-cho 2-4-1, Fukuyama, Hiroshima 720-0802, Japan;

    Laboratory of Cell-Death Control BioTechnology, Faculty of Life and Environmental Sciences, Prefectural University of Hiroshima, Nanatsuka 562, Shobara, Hiroshima 727-0023, Japan,Department of Radiological Technology, Faculty of Health Sciences, Butsuryo College of Osaka, Otorikitamachi 3-33, Nishi-ku, Sakai, Osaka 593-8328, Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Hydrogen water; Electron spin resonance; 2,2'-Bipyridyl method; Antioxidant;

    机译:氢水;电子自旋共振;2,2'-联吡啶法;抗氧化剂;

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