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首发及复发性重度抑郁症发作时的海马代谢异常:一项质子磁共振波谱研究

Hippocampal metabolic abnormalities at first onset and with recurrent episodes of a major depressive disorder: a proton magnetic resonance spectroscopy study.

作者信息

Milne Andrea, MacQueen Glenda M, Yucel Kaan, Soreni Noam, Hall Geoffrey B C

机构信息

Department of Psychiatry and Behavioural Neurosciences, Faculty of Health Sciences, McMaster University, St. Joseph's Healthcare, Centre for Mountain Health Services, 100 West 5th, Hamilton, Ontario, Canada.

出版信息

Neuroimage. 2009 Aug 1;47(1):36-41. doi: 10.1016/j.neuroimage.2009.03.031. Epub 2009 Mar 24.

Abstract

The neural underpinnings of major depressive disorder (MDD) are unknown but there is evidence for structural alteration in the hippocampus that may become more pronounced over the course of illness. The aim of the present study was to examine metabolite levels of N-acetyl-aspartate (NAA), Myo-inositol (MI), Glutamate-glutamine (Glx) and choline-containing compounds (GPC and GPC+PCh) in patients presenting for first treatment of a depressive episode compared to those with multiple past episodes and age and sex matched controls. We used single voxel proton magnetic resonance spectroscopy ((1)H-MRS) centered on the hippocampus. Choline-containing compounds were significantly increased in patients with a high past illness burden relative to controls after controlling for hippocampal volume. The group presenting for first treatment had only increases in MI levels compared with matched controls. These results suggest that abnormal membrane turnover in the hippocampus is greater in patients with highly recurrent illness, and provide support for the hypothesis that there are neuronal changes in this region over the course of illness.

摘要

重度抑郁症(MDD)的神经基础尚不清楚,但有证据表明海马体存在结构改变,且这种改变可能在病程中变得更加明显。本研究的目的是检查首次接受抑郁发作治疗的患者与有多次既往发作史的患者以及年龄和性别匹配的对照组相比,其N-乙酰天门冬氨酸(NAA)、肌醇(MI)、谷氨酸-谷氨酰胺(Glx)和含胆碱化合物(甘油磷酰胆碱和甘油磷酰胆碱+磷酸胆碱)的代谢物水平。我们使用以海马体为中心的单体素质子磁共振波谱((1)H-MRS)。在控制海马体体积后,有高既往疾病负担的患者相对于对照组,含胆碱化合物显著增加。首次接受治疗的组与匹配的对照组相比,仅MI水平有所升高。这些结果表明,高度复发性疾病患者海马体中的膜周转异常更大,并为疾病过程中该区域存在神经元变化的假说提供了支持。

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