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急性多巴胺/去甲肾上腺素再摄取抑制会升高大鼠的脑温和核心体温。

Acute dopamine/norepinephrine reuptake inhibition increases brain and core temperature in rats.

作者信息

Hasegawa Hiroshi, Meeusen Romain, Sarre Sophie, Diltoer Marc, Piacentini Maria Francesca, Michotte Yvette

机构信息

Department of Human Physiology and Sportsmedicine, Vrije Universiteit Brussel, Belgium.

出版信息

J Appl Physiol (1985). 2005 Oct;99(4):1397-401. doi: 10.1152/japplphysiol.00435.2005. Epub 2005 May 26.

Abstract

The purpose of the present study was to examine the effects of an acute dose of the dual dopamine (DA) and norepinephrine (NE) reuptake inhibitor bupropion (Bup) on brain (T(brain)), body core (T(core)), and tail skin (T(tail)) temperature in freely moving rats and to simultaneously monitor the extracellular neurotransmitter concentrations in the preoptic area and anterior hypothalamus (PO/AH). A microdialysis probe was inserted in the PO/AH, and samples for NE, DA, and serotonin (5-HT) were collected every 20 min before and after the injection of 17 mg/kg of Bup, for a total sampling time of 180 min. T(core) was monitored using a biotelemetry system. T(brain) and T(tail), an index of heat loss response, were also measured. Both NE and DA levels in the PO/AH significantly increased after Bup injection compared with the baseline levels, reaching approximately 450 and 230%, respectively, 40 min after injection. There was no effect on 5-HT release. The neurotransmitter changes were accompanied by a significant decrease in T(tail) and an increase in both T(brain) and T(core) compared with the baseline levels. The present results demonstrate that inhibition of NE and DA reuptake suppresses heat loss mechanisms and elevates T(brain) and T(core) in freely moving rats.

摘要

本研究的目的是检测急性剂量的多巴胺(DA)和去甲肾上腺素(NE)双重再摄取抑制剂安非他酮(Bup)对自由活动大鼠的脑温(T(brain))、体核温度(T(core))和尾皮温度(T(tail))的影响,并同时监测视前区和下丘脑前部(PO/AH)的细胞外神经递质浓度。将一个微透析探针插入PO/AH,在注射17mg/kg的Bup之前和之后,每20分钟收集一次NE、DA和5-羟色胺(5-HT)的样本,总采样时间为180分钟。使用生物遥测系统监测T(core)。还测量了T(brain)和T(tail)(热损失反应的一个指标)。与基线水平相比,注射Bup后PO/AH中的NE和DA水平均显著升高,注射后40分钟分别达到约450%和230%。对5-HT释放没有影响。与基线水平相比,神经递质变化伴随着T(tail)的显著降低以及T(brain)和T(core)的升高。目前的结果表明,抑制NE和DA再摄取可抑制自由活动大鼠的热损失机制并升高T(brain)和T(core)。

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