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基础代谢率在实验室小鼠转化实验中的变化意义。

Significance of variation in basal metabolic rate in laboratory mice for translational experiments.

机构信息

Faculty of Biology, University of Białystok, Ciołkowskiego 1J, 15-245, Białystok, Poland.

出版信息

J Comp Physiol B. 2022 Jan;192(1):161-169. doi: 10.1007/s00360-021-01410-9. Epub 2021 Sep 30.

Abstract

The basal metabolic rate (BMR) accounts for 60-70% of the daily energy expenditure (DEE) in sedentary humans and at least 50% of the DEE in laboratory mice in the thermoneutral zone. Surprisingly, however, the significance of the variation in the BMR is largely overlooked in translational research using such indices as physical activity level (PAL), i.e., the ratio of DEE/BMR. In particular, it is unclear whether emulation of human PAL in mouse models should be carried out within or below the thermoneutral zone. It is also unclear whether physical activity within the thermoneutral zone is limited by the capacity to dissipate heat generated by exercise and obligatory metabolic processes contributing to BMR. We measured PAL and spontaneous physical activity (SPA) in laboratory mice from two lines, divergently selected towards either high or low level of BMR, and acclimated to 30 °C (i.e., the thermoneutral zone), 23 or 4 °C. The mean PAL did not differ between both lines in the mice acclimated to 30 °C but became significantly higher in the low BMR mouse line at the lower ambient temperatures. Acclimation to 30 °C reduced the mean locomotor activity but did not affect the significant difference observed between the selected lines. We conclude that carrying out experiments within the thermoneutral zone can increase the consistency of translational studies aimed at the emulation of human energetics, without affecting the variation in physical activity correlated with BMR.

摘要

基础代谢率(BMR)占久坐不动的人类日常能量消耗(DEE)的 60-70%,在热中性区的实验小鼠中至少占 DEE 的 50%。然而,令人惊讶的是,在用身体活动水平(PAL)等指标(即 DEE/BMR 的比值)进行转化研究时,BMR 变化的意义在很大程度上被忽视了。特别是,尚不清楚在小鼠模型中模拟人类 PAL 是否应该在热中性区内或以下进行。也不清楚热中性区内的体力活动是否受到运动产生的热量和导致 BMR 的强制性代谢过程的散热能力的限制。我们测量了来自两条线的实验室小鼠的 PAL 和自发体力活动(SPA),这两条线分别朝着高或低 BMR 水平进行了选择,并适应了 30°C(即热中性区)、23 或 4°C。在适应 30°C 的小鼠中,两条线之间的平均 PAL 没有差异,但在较低环境温度下,低 BMR 小鼠线的 PAL 显著升高。适应 30°C 降低了平均运动活性,但没有影响观察到的选定线之间的显著差异。我们得出结论,在热中性区内进行实验可以提高旨在模拟人类能量学的转化研究的一致性,而不会影响与 BMR 相关的体力活动变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e61e/8816319/1b31d44996e6/360_2021_1410_Fig1_HTML.jpg

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