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Seasonal variation in natural abundance of 2H and 18O in urine samples from rural Nigeria

机译:尼日利亚农村尿液样本中2H和18O的自然丰度的季节性变化

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摘要

The doubly labeled water (DLW) method is used to measure free-living energy expenditure in humans. Inherent to this technique is the assumption that natural abundances of stable isotopes 2H and 18O in body water remain constant over the course of the measurement period and after elimination of the loading dose of DLW will return to the same predose level. To determine variability in the natural abundances of 2H and 18O in humans living in a region with seasonal shifts in rain patterns and sources of drinking water, over the course of 12 mo we collected weekly urine samples from four individuals living in southwest Nigeria as well as samples of their drinking water. From ongoing regional studies of hypertension, obesity, and energy expenditure, we estimated average water turnover rate, urine volumes, and sodium and potassium excretion. Results suggest that 2H and 18O in urine, mean concentrations of urinary sodium and potassium, urine volume, and total body turnover differed significantly from dry to rainy season. Additionally, seasonal weather variables (mean monthly maximum temperatures, total monthly rainfall, and minimum relative humidity) were all significantly associated with natural abundances in urine. No seasonal difference was observed in drinking water samples. Findings suggest that natural abundances in urine may not remain constant as assumed, and studies incorporating DLW measurements across the transition of seasons should interpret results with caution unless appropriate doses of the tracers are used.
机译:双标签水(DLW)方法用于测量人类的自由生活能量消耗。该技术的固有假设是,人体水中稳定同位素 2 H和 18 O的自然丰度在测量期间和消除负荷后保持恒定DLW的剂量将恢复到相同的给药前水平。为了确定生活在降雨模式和饮用水水源季节性变化的区域中的人类在12年来的自然变化中 2 H和 18 O的变异性另外,我们每周从尼日利亚西南部的四个人那里收集尿液样本以及他们的饮用水样本。根据正在进行的有关高血压,肥胖和能量消耗的区域研究,我们估算了平均水周转率,尿量以及钠和钾排泄量。结果表明,从干季到雨季,尿液中的 2 H和 18 O,尿钠和钾的平均浓度,尿液量以及人体总周转量均存在显着差异。此外,季节性天气变量(平均每月最高温度,每月总降雨量和最小相对湿度)都与尿液的自然丰度显着相关。在饮用水样品中未观察到季节差异。研究结果表明,尿液中的自然丰度可能不会像假设的那样保持恒定,并且在整个季节过渡期间纳入DLW测量的研究应谨慎解释结果,除非使用了适当剂量的示踪剂。

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