首页> 外文期刊>Frontiers in Behavioral Neuroscience >Task-Dependent Differences in Operant Behaviors of Rats With Acute Exposure to High Ambient Temperature: A Potential Role of Hippocampal Dopamine Reuptake Transporters
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Task-Dependent Differences in Operant Behaviors of Rats With Acute Exposure to High Ambient Temperature: A Potential Role of Hippocampal Dopamine Reuptake Transporters

机译:急性暴露于高环境温度大鼠的操作行为中的任务依赖差异:海马多巴胺再摄取转运蛋白的潜在作用。

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Behavioral or cognitive functions are known to be influenced by thermal stress from the change in ambient temperature (Ta). However, little is known about how increased Ta (i.e., when the weather becomes warm or hot) may affect operant conditioned behavior and the neural substrates involved. The present study thus investigated the effects of high Ta on operant behaviors maintained on a fixed-ratio 1 (FR1) and a differential reinforcement for low-rate responding 10 s (DRL 10-s) schedule of reinforcement. The rats were randomly assigned to three groups receiving acute exposure to Ta of 23°C, 28°C, and 35°C, respectively, for evaluating the effects of high Ta exposure on four behavioral tests. Behavioral responses in an elevated T-maze and locomotor activity were not affected by Ta treatment. Regarding operant tests, while the total responses of FR1 behavior were decreased only under 35°C when compared with the control group of 23°C, those of DRL 10-s behavior were significantly reduced in both groups of 28°C and 35°C. Distinct patterns of inter-response time (IRT) distribution of DRL behavior appeared among the three groups; between-group differences of behavioral changes produced by high Ta exposure were confirmed by quantitative analyses of IRT data. Western blot assays of dopamine (DA) D1 and D2 receptor, DA transporter (DAT) and brain-derived neurotrophic factor (BDNF) were conducted for the sample tissues collected in six brain areas from all the subjects after acute high Ta exposure. Significant Ta-related effects were only revealed in the dorsal hippocampus (dHIP). In which, the DAT levels were increased in a Ta-dependent fashion that was associated with operant behavior changes under high Ta exposure. And, there as an increased level of D1 receptors in the 28°C group. In summary, these data indicate that the performance of operant behavior affected by the present high Ta exposure is task-dependent, and these changes of operant behaviors cannot be attributed to gross motor function or anxiety being affected. The regulation of dHIP DAT may be involved in this operant behavioral change under high Ta exposure.
机译:已知行为或认知功能受环境温度(Ta)变化的热应力影响。然而,关于增加的Ta(即当天气变热或变热时)如何影响操作性条件行为和所涉及的神经底物知之甚少。因此,本研究调查了高Ta对固定比率1(FR1)和低速响应10 s(DRL 10-s)增强计划中的差分增强维持的操作行为的影响。将大鼠随机分为三组,分别接受23℃,28℃和35℃的Ta急性暴露,以评估高Ta暴露对四种行为测试的影响。 Ta处理不影响T迷宫和运动活动升高的行为反应。关于操作测试,虽然与23°C的对照组相比,FR1行为的总响应仅在35°C下才降低,但在28°C和35°C的两组中DRL 10-s行为的总响应均显着降低。在三组之间,DRL行为的响应间时间(IRT)分布存在明显差异。 IRT数据的定量分析证实了高Ta暴露引起的行为改变的组间差异。在急性高Ta暴露后,从所有受试者的六个大脑区域收集的样本组织进行了多巴胺(DA)D1和D2受体,DA转运蛋白(DAT)和脑源性神经营养因子(BDNF)的蛋白质印迹分析。仅在背海马(dHIP)中显示出与Ta相关的显着作用。其中,DAT水平以Ta依赖性方式增加,这与高Ta暴露下操作行为的变化有关。而且,在28°C组中,D1受体水平升高。总之,这些数据表明受当前高Ta暴露影响的操作行为的表现取决于任务,并且这些操作行为的变化不能归因于总体运动功能或焦虑受到影响。 dHIP DAT的调节可能与高Ta暴露下的这种操作行为改变有关。

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