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Dark-Phase Light Contamination Disrupts Circadian Rhythms in Plasma Measures of Endocrine Physiology and Metabolism in Rats

机译:暗相光污染破坏大鼠内分泌生理和代谢的血浆指标中的昼夜节律

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摘要

Dark-phase light contamination can significantly disrupt chronobiologic rhythms, thereby potentially altering the endocrine physiology and metabolism of experimental animals and influencing the outcome of scientific investigations. We sought to determine whether exposure to low-level light contamination during the dark phase influenced the normally entrained circadian rhythms of various substances in plasma. Male Sprague–Dawley rats (n = 6 per group) were housed in photobiologic light-exposure chambers configured to create 1) a 12:12-h light:dark cycle without dark-phase light contamination (control condition; 123 µW/cm2, lights on at 0600), 2) experimental exposure to a low level of light during the 12-h dark phase (with 0.02, 0.05, 0.06, or 0.08 µW/cm2 light at night), or 3) constant bright light (123 µW/cm2). Dietary and water intakes were recorded daily. After 2 wk, rats underwent 6 low-volume blood draws at 4-h intervals (beginning at 0400) during both the light and dark phases. Circadian rhythms in dietary and water intake and levels of plasma total fatty acids and lipid fractions remained entrained during exposure to either control conditions or low-intensity light during the dark phase. However, these patterns were disrupted in rats exposed to constant bright light. Circadian patterns of plasma melatonin, glucose, lactic acid, and corticosterone were maintained in all rats except those exposed to constant bright light or the highest level of light during the dark phase. Therefore even minimal light contamination during the dark phase can disrupt normal circadian rhythms of endocrine metabolism and physiology and may alter the outcome of scientific investigations.
机译:暗相光污染会严重破坏时间生物学节律,从而潜在地改变实验动物的内分泌生理和代谢,并影响科学研究的结果。我们试图确定在黑暗阶段暴露于低水平光污染是否会影响血浆中各种物质正常夹带的昼夜节律。将雄性Sprague–Dawley大鼠(每组n = 6)放在光生物学曝光室中,该室配置为产生1)12:12-h的光:暗周期,无暗相光污染(对照条件; 123 µW / cm < sup> 2 ,灯在0600亮起),2)在12小时的暗阶段(0.02、0.05、0.06或0.08 µW / cm 2 )进行实验性曝光sup>夜间照明),或3)恒定的亮光(123 µW / cm 2 )。每天记录饮食和饮水量。 2周后,在明相和暗相期间,大鼠每4小时间隔(从0400开始)接受6次小剂量抽血。在黑暗阶段,在暴露于对照条件或低强度光照下,饮食和水分摄入的昼夜节律以及血浆总脂肪酸和脂质组分的水平仍然保持着。然而,这些模式在暴露于恒定亮光的大鼠中被破坏。除暴露于恒定亮光或在黑暗阶段处于最高水平的那些大鼠外,所有大鼠均维持血浆褪黑激素,葡萄糖,乳酸和皮质酮的昼夜节律模式。因此,即使在黑暗阶段,即使最小的光污染也可能破坏内分泌代谢和生理的正常昼夜节律,并可能改变科学研究的结果。

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