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Direct analysis of δ2H and δ18O in natural and enriched human urine using laser-based Off-Axis Integrated Cavity Output Spectroscopy

机译:在自然和丰富了人类的尿液用激光为基础的离轴积分腔输出光谱δ2H和氧同位素的直接分析

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摘要

The stable isotopes of hydrogen (δ2H) and oxygen (δ18O) in human urine are measured during studies of total energy expenditure by the doubly labeled water method, measurement of total body water, and measurement of insulin resistance by glucose disposal among other applications. An ultrasensitive laser absorption spectrometer based on off-axis integrated cavity output spectroscopy was demonstrated for simple and inexpensive measurement of stable isotopes in natural isotopic abundance and isotopically enriched human urine. Preparation of urine for analysis was simple and rapid (approx. 25 samples per hour), requiring no decolorizing or distillation steps. Analysis schemes were demonstrated to address sample-to-sample memory while still allowing analysis of 45 natural or 30 enriched urine samples per day. The instrument was linear over a wide range of water isotopes (δ2H = −454 to +1702 ‰ and δ18O= −58.3 to +265 ‰). Measurements of human urine were precise to better than 0.65 ‰ 1σ for δ2H and 0.09 ‰ 1σ for δ18O for natural urines, 1.1 ‰ 1σ for δ2H and 0.13 ‰ 1σ for δ18O for low enriched urines, and 1.0 ‰ 1σ for δ2H and 0.08 ‰ 1σ for δ18O for high enriched urines. Furthermore, the accuracy of the isotope measurements of human urines was verified to better than ±0.81 ‰ in δ2H and ±0.13 ‰ in δ18O (average deviation) against three independent IRMS laboratories. The ability to immediately and inexpensively measure the stable isotopes of water in human urine is expected to increase the number and variety of experiments which can be undertaken.
机译:在双能量水法研究总能量消耗的过程中,测量人尿中氢(δ 2 H)和氧(δ 18 O)的稳定同位素身体中的水分,以及通过葡萄糖处理来测量胰岛素抵抗等。演示了基于离轴集成腔输出光谱的超灵敏激光吸收光谱仪,该方法可简单,廉价地测量天然同位素丰度和同位素富集的人类尿液中的稳定同位素。用于分析的尿液制备简单,快速(每小时约25个样品),无需脱色或蒸馏步骤。事实证明,分析方案可解决样品间的记忆问题,同时仍允许每天分析45种天然或30种富尿样品。该仪器在宽范围的水同位素(δ 2 H = -454至+1702‰,δ 18 O = -58.3至+265‰)上呈线性。人体的尿液测量结果精确到δ 2 H优于0.65‰1σ和δ 18 O优于0.09‰1σ,δ 1.1‰1σ低浓尿中δ 18 O的2 H和0.13‰1σ,δ中δ 2 H的1.0‰1σ和δ 0.08‰1σ 18 用于高尿液。此外,经验证,人尿的同位素测量准确度优于δ 2 H的±0.81‰和δ 18 O的±0.13‰(平均偏差)。三个独立的IRMS实验室。立即和廉价地测量人尿中水的稳定同位素的能力有望增加可以进行的实验的数量和种类。

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