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Behavioral deficits and exaggerated feedback control over raphe-hippocampal serotonin neurotransmission in restrained rats.

机译:行为受限和对大鼠海马神经元5-羟色胺神经传递的夸大反馈控制。

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摘要

Serotonin (5-hydroxytryptamine, 5-HT), acting via the hippocampus, is thought to be critical for the neuroadaptation that alleviates the adverse effects of stress on emotion and behavior. It was hypothesized that a decrease in raphe-hippocampal serotonin neurotransmission caused by exaggerated feedback inhibition of 5-HT synthesis and release significantly contributes to stress-induced behavioral deficits. Acute exposure to 2 h of restraint stress increased 5-HT metabolism in the cortex and raphe region but had no such effect in the hippocampus. Exposure to 2 h of restraint stress elicited anxiety-like behavior, which was monitored in the light-dark transition test the next day. Animals sacrificed 24 h after termination of the stress period exhibited a decrease in the concentration of 5-HT and its metabolite 5-hydroxyindoleacetic acid (5-HIAA) in the hippocampus but not in the cortex and raphe. 8-Hydroxy-2-di-n-propylaminotetralin (8-OH-DPAT) injected at doses of 0.125, 0.25 and 0.5 mg/kg decreased 5-HT metabolism in the raphe, cortex and hippocampus of restrained and unrestrained animals, and the decreases in the raphe and hippocampus, but not those in the cortex, were greater in restrained than unrestrained animals. Exaggerated feedback control over raphe-hippocampal serotonin neurotransmission may be involved in the inability of the organism to cope with increased stress and elicits behavioral depression.
机译:通过海马起作用的5-羟色胺(5-羟色胺,5-HT)被认为对于减轻压力对情绪和行为的不利影响的神经适应至关重要。据推测,由于5-HT合成和释放的过度反馈抑制而引起的河豚-海马5-羟色胺神经传递的减少显着促进了应激引起的行为缺陷。急性暴露于2 h的束缚压力下会增加皮层和缝区的5-HT代谢,但在海马区没有这种作用。暴露于2 h的约束压力会引起焦虑样行为,第二天在明暗过渡测试中进行了监测。在应激期终止后24小时处死的动物在海马体中而不是在皮层和中缝中显示5-HT及其代谢产物5-羟基吲哚乙酸(5-HIAA)的浓度降低。分别以0.125、0.25和0.5 mg / kg的剂量注射8-羟基-2-二-正丙基氨基四氢萘(8-OH-DPAT)会降低受限和不受约束的动物的缝,皮层和海马中的5-HT代谢,并且受约束的动物比未受约束的动物在缝隙和海马体中减少的程度更大,但在皮质中则没有。过度的反馈控制河豚-海马5-羟色胺神经传递可能与生物体无法应付压力增加和引起行为抑郁症有关。

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