彩色富集装置对雄性 Sprague-Dawley 大鼠昼夜代谢和生理的影响

Comparative medicine Pub Date : 2016-01-01
Melissa A Wren-Dail, Robert T Dauchy, Tara G Ooms, Kate C Baker, David E Blask, Steven M Hill, Lynell M Dupepe, Rudolf P Bohm
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摘要

环境强化(EE)为实验室动物提供了参与物种特定行为的机会。然而,必须评估 EE 装置对正常生理和科学成果的影响。我们假设,大鼠在彩色强化装置(CED)内所接触的光的光谱透射率(颜色)会影响各种血浆标志物的昼夜节律。成对饲养的雄性 Crl:SD 大鼠被饲养在通风的架子上,处于 12:12 小时的光暗环境(265.0 lx;6:00 开灯)中;室内照明强度和时间安排在整个研究过程中保持不变。由 6 只大鼠组成的处理组在琥珀色、红色、透明或不透明的彩色强化隧道中暴露 25 天。我们测量了大鼠花在 CED 中的时间比例。我们在 4:00、8:00、12:00、16:00、20:00 和 24:00 采集血液,分析血浆中的褪黑激素、总脂肪酸和皮质酮。与透明隧道相比,大鼠在琥珀色、红色和不透明 CED 中花费的时间更长。抽血开始后,所有管道的使用量都明显减少,只有透明隧道的使用量与抽血开始前相比没有变化。不透明 CED 组的正常夜间褪黑激素浓度峰值出现了明显的紊乱。红色 CED 大鼠的食物和水摄入量以及体重变化以及不透明 CED 组的总脂肪酸浓度与其他组不同。这些结果表明,CED 的颜色改变了大鼠血浆代谢和生理指标的正常昼夜节律,因此可能会影响科学研究的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of Colored Enrichment Devices on Circadian Metabolism and Physiology in Male Sprague-Dawley Rats.

Environmental enrichment (EE) gives laboratory animals opportunities to engage in species-specific behaviors. However, the effects of EE devices on normal physiology and scientific outcomes must be evaluated. We hypothesized that the spectral transmittance (color) of light to which rats are exposed when inside colored enrichment devices (CED) affects the circadian rhythms of various plasma markers. Pair-housed male Crl:SD rats were maintained in ventilated racks under a 12:12-h light:dark environment (265.0 lx; lights on, 0600); room lighting intensity and schedule remained constant throughout the study. Treatment groups of 6 subjects were exposed for 25 d to a colored enrichment tunnel: amber, red, clear, or opaque. We measured the proportion of time rats spent inside their CED. Blood was collected at 0400, 0800, 1200, 1600, 2000, and 2400 and analyzed for plasma melatonin, total fatty acids, and corticosterone. Rats spent more time in amber, red, and opaque CED than in clear tunnels. All tubes were used significantly less after blood draws had started, except for the clear tunnel, which showed no change in use from before blood sampling began. Normal peak nighttime melatonin concentrations showed significant disruption in the opaque CED group. Food and water intakes and body weight change in rats with red-tinted CED and total fatty acid concentrations in the opaque CED group differed from those in other groups. These results demonstrate that the color of CED altered normal circadian rhythms of plasma measures of metabolism and physiology in rats and therefore might influence the outcomes of scientific investigations.

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