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Glucose tolerance in mice exposed to light–dark stimulus patterns mirroring dayshift and rotating shift schedules

机译:暴露于明-暗刺激模式的小鼠的葡萄糖耐量反映了日班和轮班时间表

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摘要

Glucose tolerance was measured in (nocturnal) mice exposed to light–dark stimulus patterns simulating those that (diurnal) humans would experience while working dayshift (DSS) and 2 rotating night shift patterns (1 rotating night shift per week [RSS1] and 3 rotating night shifts per week [RSS3]). Oral glucose tolerance tests were administered at the same time and light phase during the third week of each experimental session. In contrast to the RSS1 and RSS3 conditions, glucose levels reduced more quickly for the DSS condition. Glucose area-under-the-curve measured for the DSS condition was also significantly less than that for the RSS1 and RSS3 conditions. Circadian disruption for the 3 light–dark patterns was quantified using phasor magnitude based on the 24-h light–dark patterns and their associated activity–rest patterns. Circadian disruption for mice in the DSS condition was significantly less than that for the RSS1 and RSS3 conditions. This study extends previous studies showing that even 1 night of shift work decreases glucose tolerance and that circadian disruption is linked to glucose tolerance in mice.
机译:在暴露于明暗刺激模式下的(夜间)小鼠中测量了葡萄糖耐量,模拟了(昼夜)人类在白天工作(DSS)时的经验和两种夜间轮班(每周轮换一次[RSS1]和3次夜间轮换)。每周的夜班[RSS3]。在每个实验阶段的第三周,在同一时间和光照阶段进行口服葡萄糖耐量测试。与RSS1和RSS3条件相比,DSS条件下的葡萄糖水平降低得更快。 DSS条件下测得的曲线下葡萄糖面积也明显小于RSS1和RSS3条件下的曲线下葡萄糖面积。使用基于24小时明暗模式及其相关活动-休息模式的相量来量化3种明暗模式的昼夜节律破坏。 DSS条件下小鼠的昼夜节律破坏明显小于RSS1和RSS3条件下的昼夜节律破坏。这项研究扩展了先前的研究,表明即使轮班工作1夜也能降低葡萄糖耐量,并且昼夜节律紊乱与小鼠的葡萄糖耐量有关。

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