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五种近交系小鼠的饲养密度对其的影响。

Effects of housing density in five inbred strains of mice.

机构信息

The Jackson Laboratory, Bar Harbor, Maine, United States of America.

出版信息

PLoS One. 2014 Mar 21;9(3):e90012. doi: 10.1371/journal.pone.0090012. eCollection 2014.

Abstract

To evaluate the effect of increased mouse density in a cage, mice were housed at the density recommended by the 1996 Guide for the Care and Use of Laboratory Animals and at densities that were approximately 2, 2.6, and 3 times greater. Five strains of mice (129S1/SvImJ, A/J, BALB/cByJ, C57BL/6J, and DBA/2J) were evaluated throughout 3- and 8-month timeframes for health and well-being, including mortality, cardiac measures, plasma cholesterol, body weight, bone mineral density, organ weights, hematology, behavioral observations, and open field and light-dark tests. For 22 of the 27 traits measured, increased housing density had no significant effect. Kidney weight, adrenal weight, and heart rate decreased as mice were housed more densely, and some of the decreases were statistically significant. Reduced kidney weight, adrenal weight, and heart rate are not considered to be negative outcomes and may even indicate reduced stress. However, all measurements of these three traits were within normal physiological ranges. Percent fat increased slightly in strains 129S1/SvImJ, A/J, and DBA/2J, but did not increase in strains BALB/cByJ, and C57BL/6J. These results indicate that mice can be housed at higher densities than those currently recommended.

摘要

为了评估笼内老鼠密度增加的效果,将老鼠以 1996 年《实验室动物护理和使用指南》推荐的密度以及大约 2、2.6 和 3 倍的密度进行饲养。在 3 个月和 8 个月的时间内,对 5 种品系的老鼠(129S1/SvImJ、A/J、BALB/cByJ、C57BL/6J 和 DBA/2J)进行了健康和福祉评估,包括死亡率、心脏测量、血浆胆固醇、体重、骨矿物质密度、器官重量、血液学、行为观察以及开放场和明暗测试。在测量的 27 个特征中,有 22 个特征表明增加饲养密度没有显著影响。随着老鼠被饲养得更加密集,肾脏重量、肾上腺重量和心率降低,其中一些降低具有统计学意义。肾脏重量、肾上腺重量和心率降低不被认为是负面结果,甚至可能表明应激减少。然而,这三个特征的所有测量值都在正常生理范围内。129S1/SvImJ、A/J 和 DBA/2J 三个品系的脂肪百分比略有增加,但 BALB/cByJ 和 C57BL/6J 两个品系的脂肪百分比没有增加。这些结果表明,老鼠可以被饲养在比目前推荐的更高的密度下。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3f1f/3962340/60a3aa25312d/pone.0090012.g001.jpg

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