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Validity of the doubly labeled water method for estimating CO2 production in mice under different nutritional conditions

机译:双标记水方法在不同营养条​​件下估算小鼠二氧化碳生成量的有效性

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摘要

The doubly labeled water (DLW) technique is used to assess metabolic rate (MR) in free-living conditions. We investigated whether differences in the nutritional and body adiposity status affect validity of the assessment of CO2 production (rCO(2)) by the DLW technique. To serve this purpose, we compared calculated rCO(2) by the DLW method to actual CO2 production concomitantly measured in an indirect calorimetry setup over a 3-day period in mice fed with a low-fat (LF) diet or an obesogenic high-fat/high-sucrose (HF) diet. To uncover a potential effect of body composition on DLW accuracy, the HF-fed group was further subdivided in a diet-induced obesity-prone (DIO) and diet-induced obesity-resistant (DR) group. Furthermore, we assessed the influence of different sampling protocols, duration, and methodology of calculation. An excellent match was found between rCO(2) assessed by the two methods in the LF-fed mice (least discrepancy -0.5 +/- 1.1%). In contrast, there was a consistent overestimation of rCO(2) by the DLW technique in the HF-fed animals compared with actual CO2 production independent from body mass gain (least discrepancy DR + 15.9 +/- 2.2%, DIO + 18.5 +/- 3.2%). The least discrepancies were found when two-pool model equations and the intercept method were used to calculate the body water pool. Furthermore, the HF group presented different equilibration kinetics of H-2 and O-18 and a lower dilution space ratio between the two. We recommend particular caution when using the DLW method for MR assessment in HF-fed animals and potentially humans because of the overestimation of rCO(2).
机译:双标签水(DLW)技术用于评估自由生活条件下的代谢率(MR)。我们调查了营养和身体肥胖状况的差异是否影响通过DLW技术评估CO2产生量(rCO(2))的有效性。为了达到这个目的,我们将DLW方法计算出的rCO(2)与间接热量测定法在3天时间内用低脂(LF)饮食或致肥胖高脂饮食喂养的小鼠中同时测量的实际CO2产量进行了比较。脂肪/高蔗糖(HF)饮食。为了揭示身体成分对DLW准确性的潜在影响,将HF喂养组进一步分为饮食诱发肥胖易感(DIO)和饮食诱发肥胖抵抗(DR)组。此外,我们评估了不同采样协议,持续时间和计算方法的影响。发现通过两种方法在LF喂养的小鼠中评估的rCO(2)极佳匹配(最小差异-0.5 +/- 1.1%)。相比之下,通过HFW喂养的动物,通过DLW技术对rCO(2)进行了一致的高估,而实际的CO2产生与体重增加无关(最低差异DR + 15.9 +/- 2.2%,DIO + 18.5 + / -3.2%)。当使用两池模型方程和截距法来计算人体水池时,发现的差异最小。此外,HF基团表现出不同的H-2和O-18平衡动力学,并且两者之间的稀释空间比较低。由于对rCO(2)的估计过高,我们建议在使用DLW方法进行HF喂养的动物和潜在人类的MR评估时特别谨慎。

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