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嗅球切除大鼠作为抑郁症模型:海马体通路。

The olfactory bulbectomized rat as a model of depression: The hippocampal pathway.

作者信息

Morales-Medina J C, Iannitti T, Freeman A, Caldwell H K

机构信息

Centro de Investigación en Reproducción Animal, CINVESTAV- Universidad Autónoma de Tlaxcala, AP 62, CP 90000, Mexico.

Department of Neuroscience, Sheffield Institute for Translational Neuroscience (SITraN), University of Sheffield, Sheffield, S10 2HQ, UK.

出版信息

Behav Brain Res. 2017 Jan 15;317:562-575. doi: 10.1016/j.bbr.2016.09.029. Epub 2016 Sep 12.

Abstract

In rodents, the removal of the olfactory bulbs (OBs), i.e. olfactory bulbectomy (OBX), results in numerous alterations in neurotransmitter, endocrine and immune systems, as well as behavioral changes, similar to those observed in depressed patients. Because the behavioral deficits induced in OBX animals are reversed after repeated administration of antidepressants, this is a model often used to test the effectiveness of putative antidepressant agents. Recent evidence suggests that OBX results in the dysfunction of various cellular processes within the hippocampus, including decreases in dentate gyrus neurogenesis, disruption in long-term potentiation in CA1 and CA3 subregions and neuronal atrophy in the CA1 subregion, along with downstream markers, all of which are consistent with abnormal neuronal activity in the hippocampus of clinically depressed populations. Moreover, repeated administration of novel natural and synthetic antidepressant compounds can improve certain aspects of depression-like behavior and hippocampal function. In an effort to bring together the existing literature, this review will focus on the mechanisms by which proposed pharmaceuticals impact hippocampal-dependent processes and behavior.

摘要

在啮齿动物中,切除嗅球(OBs),即进行嗅球切除术(OBX),会导致神经递质、内分泌和免疫系统发生诸多改变,以及行为变化,这些变化与抑郁症患者所观察到的相似。由于在反复给予抗抑郁药后,OBX动物诱导出的行为缺陷会得到逆转,所以这是一个常用于测试假定抗抑郁药有效性的模型。最近的证据表明,OBX会导致海马体内各种细胞过程功能失调,包括齿状回神经发生减少、CA1和CA3亚区域的长时程增强破坏以及CA1亚区域的神经元萎缩,以及下游标志物,所有这些都与临床抑郁症患者海马体中异常的神经元活动一致。此外,反复给予新型天然和合成抗抑郁化合物可以改善抑郁样行为和海马体功能的某些方面。为了整合现有文献,本综述将聚焦于所提出的药物影响海马体依赖性过程和行为的机制。

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