Department of Physiology, Medical College of Wisconsin, Milwaukee, WI.
Department of Pediatrics, Medical College of Wisconsin, Milwaukee, WI.
J Am Assoc Lab Anim Sci. 2022 Mar 1;61(2):132-139. doi: 10.30802/AALAS-JAALAS-21-000087. Epub 2022 Jan 7.
Metabolic caging is an important tool for quantitative urine and feces collection in rodents, although significant limitations and problems accompany its use. Despite strong opinions among investigators regarding the effects of metabolic caging on energy and fluid homeostasis, careful quantitative analysis of the impact of this caging type-particularly when used for mice-is lacking. The current study assessed the effects of metabolic caging, with or without modifications such as plastic platform inserts, on ingestive behaviors, energy expenditure, accuracy of urine and fecal collection, and ambulatory activities in male C57BL/6J mice. Housing mice in metabolic cages, regardless of platform inclusion, increased energy expenditure without modifying food intake, presumably due to the inability of mice to perform normal thermoregulatory behaviors (burrowing and huddling). Surprisingly, mice in metabolic cages actively avoided platforms, and the inclusion of platforms modified the behavior of the mice and had position-dependent effects that reduced the accuracy of urine collection. Moving mice from cohousing to individual housing in home cages also increased ingestive behaviors and energy expenditure. We conclude that single housing of male C57BL/6J mice increases energy expenditure, that this increase is potentiated in metabolic caging conditions, and that platforms in metabolic cages alter mouse behavior and urine collection. Additional future work is needed to determine the potential benefits of using higher ambient temperature for studies of mice in metabolic caging and whether the above effects occur in females and other strains of mice and other rodent species.
代谢笼是一种在啮齿动物中定量收集尿液和粪便的重要工具,但在使用过程中存在明显的局限性和问题。尽管研究人员对代谢笼对能量和体液平衡的影响存在强烈意见,但对这种笼型的影响,特别是对小鼠的影响,缺乏仔细的定量分析。本研究评估了代谢笼的影响,包括或不包括塑料平台插入等修改,对雄性 C57BL/6J 小鼠的摄食行为、能量消耗、尿液和粪便收集的准确性以及活动能力的影响。将小鼠饲养在代谢笼中,无论是否包含平台,都会增加能量消耗,而不会改变食物摄入,这可能是由于小鼠无法进行正常的体温调节行为(挖掘和蜷缩)。令人惊讶的是,代谢笼中的小鼠主动避开平台,而平台的存在改变了小鼠的行为,并具有位置依赖性的影响,降低了尿液收集的准确性。将小鼠从共笼饲养转移到单独饲养在普通笼中也会增加摄食行为和能量消耗。我们得出结论,雄性 C57BL/6J 小鼠的单独饲养会增加能量消耗,而在代谢笼条件下,这种增加会被增强,代谢笼中的平台会改变小鼠的行为和尿液收集。需要进一步的研究来确定在代谢笼中研究小鼠时使用较高环境温度的潜在益处,以及上述影响是否发生在雌性和其他品系的小鼠和其他啮齿动物中。