Faculty of Biology, University of Białystok, Białystok, Poland.
Am J Physiol Regul Integr Comp Physiol. 2024 Feb 1;326(2):R91-R99. doi: 10.1152/ajpregu.00154.2023. Epub 2023 Nov 27.
Laboratory mice are commonly used for studies emulating human metabolism. To render human energetics, their ratio of daily (DEE) to basal (BMR) energy expenditure of 1.7-1.8 should be maintained. However, the DEE/BMR ratio strongly depends on whether a given study using a mouse model is carried out above, or below the lower critical temperature (LCT) of the thermoneutral zone, which is rarely considered in translational research. Here, we used mice artificially selected for high or low rates of BMR along with literature data to analyze the effect of ambient temperature on possible systematic bias in DEE/BMR. We demonstrated that the estimated LCTs of mice from the high and low BMR lines differ by more than 7°C. Furthermore, the range of variation of LCTs of mouse strains used in translational research spans from 23 to 33°C. Differences between LCTs in our selected mice and other mouse strains are mirrored by differences in their DEE-to-BMR ratio, on average increasing it at the rate of 0.172°C at temperatures below LCT. Given the wide range of LCTs in different mouse strains, we conclude that the energetic cost of thermoregulation may differ greatly for different mouse strains with a potentially large impact on translational outcomes. Thus, the LCT of a given mouse strain is an important factor that must be considered in designing translational studies.
实验小鼠常用于模拟人类代谢的研究。为了模拟人类的能量代谢,需要维持其每日(DEE)与基础代谢率(BMR)能量消耗的比例在 1.7-1.8 之间。然而,这一比例强烈依赖于使用小鼠模型进行的研究是在其舒适温度区的下限临界温度(LCT)之上还是之下进行,而这在转化研究中很少被考虑。在这里,我们使用人工选择的具有高或低 BMR 率的小鼠以及文献数据来分析环境温度对 DEE/BMR 可能存在的系统偏差的影响。结果表明,高 BMR 和低 BMR 两组小鼠的估计 LCT 相差超过 7°C。此外,转化研究中使用的不同小鼠品系的 LCT 变化范围从 23°C 到 33°C 不等。我们选择的小鼠与其他小鼠品系之间的 LCT 差异反映在其 DEE/BMR 比值的差异上,在 LCT 以下的温度下,平均每降低 0.172°C,该比值就会增加。鉴于不同小鼠品系的 LCT 范围很广,我们得出结论,不同的小鼠品系的体温调节能量成本可能存在很大差异,这可能会对转化结果产生潜在的重大影响。因此,特定小鼠品系的 LCT 是在设计转化研究时必须考虑的重要因素。