综述或非传感器论文 2009 非传感器论文

Moderate altitude but not additional endurance training increases markers of oxidative stress in exhaled breath condensate.

European journal of applied physiology Heinicke I, Boehler A, Rechsteiner T, Bogdanova A, Jelkmann W, Hofer M, Rawlings P, Araneda OF, Behn C, Gassmann M, Heinicke K
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组成图示

Moderate altitude but not additional ... 传感器构成示意图

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传感器类型

综述或非传感器论文

检测对象

过氧化氢(H2O2,呼出气冷凝液 EBC)、8-异前列腺素F2α(8-iso PGF2a,呼出气冷凝液 EBC)、还原型谷胱甘肽(GSH,全血/红细胞)

检测原理

本文主要传感检测为EBC中H2O2的电化学测定。EBC样品与稀释缓冲液混合后接触传感器,H2O2作为被测物到达固定于传感器表面的过氧化物酶。过氧化物酶催化H2O2发生还原反应,酶活性中心产生的电子经氧化还原对(redox pair)传递至传感器电极,引起电极电位/电压变化。该电压变化与H2O2浓度成正比,由EcocheckTM系统读出。文中未报告HCR、RCA、CRISPR-Cas或酶催化沉积等信号放大策略;8-iso PGF2a采用酶免疫分析,GSH采用Ellman试剂比色法,不属于该电化学传感器信号链。

检测灵敏度

LOD: 1 pg/ml(8-iso PGF2a 酶免疫分析)

效应效果

研究未报告选择性、抗干扰、RSD、加标回收率或与ELISA/HPLC/qPCR的方法学对比。EcocheckTM用于EBC中H2O2非侵入检测,结果显示中等海拔暴露使H2O2由海平面中位60 nmol/l(IQR 40–106)升至44天131 nmol/l(118–167,p<0.05),返回海平面3天仍为129 nmol/l(92–194,p<0.05)。8-iso PGF2a海拔期间由2.48 pg/ml(1.90–3.24)升至3.17 pg/ml(2.37–4.31),返回后降至1.84 pg/ml(1.58–2.23,p<0.05)。GSH急性低氧升高后长期下降。训练组与静息组无显著差异,作者认为中等海拔本身导致肺氧化应激。

传感器的构成

  • 换能器电极:sensor electrode,接收电子并产生与H2O2浓度成正比的电压变化
  • 酶催化/识别层:peroxidase(过氧化物酶),固定于传感器表面,催化H2O2还原
  • 电子传递层:redox pair(氧化还原对),将酶反应电子传递至电极

中文摘要

本研究探讨运动与中等海拔对氧化还原平衡的联合影响。10名耐力越野滑雪运动员和5名久坐对照者在海拔2800 m停留6周。以呼出气冷凝液(EBC)中过氧化氢(H2O2)作为氧化应激标志物,采用EcocheckTM生物传感器测量系统检测;8-异前列腺素F2α(8-iso PGF2a)用酶免疫分析测定;全血还原型谷胱甘肽(GSH)用Ellman试剂酶法测定。结果显示,运动组与静息组在中等海拔均出现氧化应激标志物升高,两组间无差异,因此合并数据分析海拔效应。H2O2在海平面基线中位数为60 nmol/l,海拔44天升至131 nmol/l(p<0.05),返回海平面3天后仍为129 nmol/l(p<0.05)。8-iso PGF2a在海拔期间呈升高趋势,返回海平面后显著下降(p<0.001)。急性低氧使GSH升高,随后在长期海拔停留中下降(p<0.001)。结论:最长6周的中等海拔暴露可独立于额外耐力训练增加EBC氧化应激标志物,且返回海平面3天后仍可检出。

英文摘要

Oxidative stress occurs at altitude, and physical exertion might enhance this stress. In the present study, we investigated the combined effects of exercise and moderate altitude on redox balance in ten endurance exercising biathletes, and five sedentary volunteers during a 6-week-stay at 2,800 m. As a marker for oxidative stress, hydrogen peroxide (H(2)O(2)) was analyzed by the biosensor measuring system Ecocheck, and 8-iso prostaglandin F2alpha (8-iso PGF2alpha) was determined by enzyme immunoassay in exhaled breath condensate (EBC). To determine the whole blood antioxidative capacity, we measured reduced glutathione (GSH) enzymatically using Ellman's reagent. Exercising athletes and sedentary volunteers showed increased levels of oxidative markers at moderate altitude, contrary to our expectations; there was no difference between both groups. Therefore, all subjects' data were pooled to examine the oxidative stress response exclusively due to altitude exposure. H(2)O(2) levels increased at altitude and remained elevated for 3 days after returning to sea level (p < or = 0.05). On the other hand, 8-iso PGF2alpha levels showed a tendency to increase at altitude, but declined immediately after returning to sea level (p < or = 0.001). Hypoxic exposure during the first day at altitude resulted in elevated GSH levels (p < or = 0.05), that decreased during prolonged sojourn at altitude (p < or = 0.001). In conclusion, a stay at moderate altitude for up to 6 weeks increases markers of oxidative stress in EBC independent of additional endurance training. Notably, this oxidative stress is still detectable 3 days upon return to sea level.

关键词

呼出气冷凝液氧化应激过氧化氢中等海拔生物传感器谷胱甘肽