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Multiple effects of circadian dysfunction induced by photoperiod shifts: Alterations in context memory and food metabolism in the same subjects

机译:光周期改变引起的昼夜节律紊乱的多种影响:同一受试者的情境记忆和食物代谢改变

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Humans exposed to shiftwork conditions have been reported to have increased susceptibility to various health problems including various forms of dementia, cancer, heart disease, and metabolic disorders related to obesity. The present experiments assessed the effects of circadian disruption on learning and memory function and various food related processes including diet consumption rates, food metabolism, and changes in body weight. These experiments utilized a novel variant of the conditioned place preference task (CPP) that is normally used to assess Pavlovian associative learning and memory processes produced via repeated context-reward pairings. For the present experiments, the standard CPP paradigm was modified in that both contexts were paired with food, but the dietary constituents of the food were different. In particular, we were interested in whether rats could differentiate between two types of carbohydrates, simple (dextrose) and complex (starch). Consumption rates for each type of carbohydrate were measured throughout training. A test of context preference without the food present was also conducted. At the end of behavioral testing, a fasting glucose test and a glucose challenge test were administered. Chronic photoperiod shifting resulted in impaired context learning and memory processes thought to be mediated by a neural circuit centered on the hippocampus. The results also showed that preferences for the different carbohydrate diets were altered in rats experiencing photoperiod shifting in that they maintained an initial preference for the simple carbohydrate throughout training. Lastly, photoperiod shifting resulted in changes in fasting blood glucose levels and elicited weight gain. These results show that chronic photoperiod shifting, which likely resulted in circadian dysfunction, impairs multiple functions of the brain and/or body in the same individual.
机译:据报道,处于轮班条件下的人类对各种健康问题的敏感性增加,包括各种形式的痴呆症,癌症,心脏病和与肥胖有关的代谢紊乱。本实验评估了昼夜节律对学习和记忆功能以及与食物有关的各种过程的影响,这些过程包括饮食消耗率,食物代谢和体重变化。这些实验利用了条件性位置偏好任务(CPP)的新颖变体,该变体通常用于评估通过重复的上下文-奖励配对产生的巴甫洛夫式联想学习和记忆过程。对于本实验,标准的CPP范式进行了修改,因为两种情况都与食物配对,但是食物的饮食成分不同。特别是,我们对大鼠是否可以区分两种碳水化合物(单糖(葡萄糖)和复合物(淀粉))感兴趣。在整个训练过程中测量每种碳水化合物的消耗率。还进行了不存在食物的情境偏好测试。在行为测试结束时,进行空腹血糖测试和葡萄糖激发测试。慢性光周期转移导致受损的情境学习和记忆过程被认为是由以海马为中心的神经回路介导的。结果还表明,经历光周期转移的大鼠改变了对不同碳水化合物饮食的偏好,因为它们在整个训练过程中都对简单碳水化合物保持了最初的偏好。最后,光周期改变导致空腹血糖水平改变并引起体重增加。这些结果表明,可能导致昼夜节律功能障碍的慢性光周期改变会损害同一个人的大脑和/或身体的多种功能。

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