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首页> 外文期刊>Nitric oxide: Biology and chemistry >Effects of dietary nitrate supplementation on microvascular physiology at 4559 m altitude - A randomised controlled trial (Xtreme Alps)
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Effects of dietary nitrate supplementation on microvascular physiology at 4559 m altitude - A randomised controlled trial (Xtreme Alps)

机译:膳食硝酸盐补充对4559米高度微血管生理学的影响 - 随机对照试验(Xtreme Alps)

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摘要

Native highlanders (e.g. Sherpa) demonstrate remarkable hypoxic tolerance, possibly secondary to higher levels of circulating nitric oxide (NO) and increased microcirculatory blood flow. As part of the Xtreme Alps study (a randomised placebo-controlled trial of dietary nitrate supplementation under field conditions of hypobaric hypoxia), we investigated whether dietary supplementation with nitrate could improve NO availability and microvascular blood flow in lowlanders. Plasma measurements of nitrate, nitrite and nitroso species were performed together with measurements of sublingual (sidestream dark-field camera) and forearm blood flow (venous occlusion plethysmography) in 28 healthy adult volunteers resident at 4559 m for 1 week; half receiving a beetroot-based high-nitrate supplement and half receiving an identically-tasting low nitrate 'placebo'. Dietary supplementation increased plasma nitrate concentrations 4-fold compared to the placebo group, both at sea level (SL; 19.2 vs 76.9 mu M) and at day 5 (D5) of high altitude (22.9 vs 84.3 mu M, p < 0.001). Dietary nitrate supplementation also significantly increased both plasma nitrite (0.78 vs. 0.86 mu M SL, 0.31 vs. 0.41 mu M D5, p = 0.03) and total nitroso product (11.3 vs. 19.7 nM SL, 9.7 vs. 12.3 nM D5, p < 0.001) levels both at sea level and at 4559 m. However, plasma nitrite concentrations were more than 50% lower at 4559 m compared to sea level in both treatment groups. Despite these significant changes, dietary nitrate supplementation had no effect on any measured read-outs of sublingual or forearm blood flow, even when environmental hypoxia was experimentally reversed using supplemental oxygen. In conclusion, dietary nitrate supplementation does not improve microcirculatory function at 4559 m.
机译:本机高地人(例如Sherpa)证明了显着的缺氧耐受性,可能是循环一氧化氮(NO)和增加的微循环血流水平。作为Xtreme Alps研究的一部分(在低收伤缺氧的膳食硝酸盐补充的随机安慰剂对照试验)中,我们研究了硝酸盐的膳食补充是否可以在Lowlanders中没有可用性和微血管血流。硝酸盐,亚硝酸盐和亚硝基物种的血浆测量与舌下(侧流暗野摄像机)和前臂血流(静脉闭塞体积描记相机)进行,在28名健康的成人志愿者居住在4559米处为1周;一半接受基于甜菜根的高硝酸盐补充剂,并接受相同品种的低硝酸盐'安慰剂'。与安慰剂组相比,膳食补充剂增加了血浆硝酸浓度4倍,在海平面(SL; 19.2 vs 76.9 mu m)和高海拔的第5天(D5)(22.9 Vs 84.3 mu m,p <0.001)。膳食硝酸盐补充剂也显着增加了血浆亚硝酸盐(0.78毫米SL,0.31与0.41μmD5,p = 0.03)和总亚硝基产物(11.3与19.7nm sl,9.7和12.3nm d5,p <0.001)海拔均水平和4559米。然而,与两种治疗组的海平面相比,血浆亚硝酸盐浓度比4559m更低。尽管有这些显着的变化,即使使用补充氧对环境缺氧进行实验逆转,膳食硝酸盐补充对任何测量的舌下或前臂血流量都没有影响。总之,膳食硝酸盐补充在4559米处不改善微循环功能。

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  • 来源
    《Nitric oxide: Biology and chemistry》 |2020年第2020期|共9页
  • 作者单位

    Southampton Gen Hosp NIHR Southampton Biomed Res Ctr Crit Care Res Area Tremona Rd Southampton SO16 6YD Hants England;

    UCLH NIHR Biomed Res Ctr UCL Ctr Altitude Space &

    Extreme Environm CASE Me Inst Sport Exercise &

    Hlth 170 Tottenham Court Rd London W1T 7HA England;

    UCLH NIHR Biomed Res Ctr UCL Ctr Altitude Space &

    Extreme Environm CASE Me Inst Sport Exercise &

    Hlth 170 Tottenham Court Rd London W1T 7HA England;

    Univ Southampton Fac Med NIHR Southampton Biomed Res Ctr Clin &

    Expt Sci Tremona Rd Southampton SO16 6YD Hants England;

    UCLH NIHR Biomed Res Ctr UCL Ctr Altitude Space &

    Extreme Environm CASE Me Inst Sport Exercise &

    Hlth 170 Tottenham Court Rd London W1T 7HA England;

    UCLH NIHR Biomed Res Ctr UCL Ctr Altitude Space &

    Extreme Environm CASE Me Inst Sport Exercise &

    Hlth 170 Tottenham Court Rd London W1T 7HA England;

    Univ Southampton Fac Med NIHR Southampton Biomed Res Ctr Clin &

    Expt Sci Tremona Rd Southampton SO16 6YD Hants England;

    Univ Southampton Fac Med NIHR Southampton Biomed Res Ctr Clin &

    Expt Sci Tremona Rd Southampton SO16 6YD Hants England;

    Southampton Gen Hosp NIHR Southampton Biomed Res Ctr Crit Care Res Area Tremona Rd Southampton SO16 6YD Hants England;

    UCLH NIHR Biomed Res Ctr UCL Ctr Altitude Space &

    Extreme Environm CASE Me Inst Sport Exercise &

    Hlth 170 Tottenham Court Rd London W1T 7HA England;

    UCLH NIHR Biomed Res Ctr UCL Ctr Altitude Space &

    Extreme Environm CASE Me Inst Sport Exercise &

    Hlth 170 Tottenham Court Rd London W1T 7HA England;

    Southampton Gen Hosp NIHR Southampton Biomed Res Ctr Crit Care Res Area Tremona Rd Southampton SO16 6YD Hants England;

    AURAPA Paul Heidelbauer Str 26 D-74321 Bietigheim Bissingen Germany;

    UCLH NIHR Biomed Res Ctr UCL Ctr Altitude Space &

    Extreme Environm CASE Me Inst Sport Exercise &

    Hlth 170 Tottenham Court Rd London W1T 7HA England;

    Southampton Gen Hosp NIHR Southampton Biomed Res Ctr Crit Care Res Area Tremona Rd Southampton SO16 6YD Hants England;

    UCLH NIHR Biomed Res Ctr UCL Ctr Altitude Space &

    Extreme Environm CASE Me Inst Sport Exercise &

    Hlth 170 Tottenham Court Rd London W1T 7HA England;

    Southampton Gen Hosp NIHR Southampton Biomed Res Ctr Crit Care Res Area Tremona Rd Southampton SO16 6YD Hants England;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 第Ⅴ族元素及其化合物;生物物理学;
  • 关键词

    Microcirculation; Nitrate; Nitrite; Altitude; Nitric oxide; Hypoxia;

    机译:微循环;硝酸盐;亚硝酸盐;高度;一氧化氮;缺氧;

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