Affilianted Mental Health Center & Hangzhou Seventh People's Hospital, Interdisciplinary Institute of Neuroscience and Technology, Zhejiang University School of Medicine, Hangzhou, China.
Key Laboratory of Biomedical Engineering of Ministry of Education, Qiushi Academy for Advanced Studies, College of Biomedical Engineering and Instrument Science, Zhejiang University, Hangzhou, China.
Mol Psychiatry. 2021 Nov;26(11):6747-6755. doi: 10.1038/s41380-021-01090-5. Epub 2021 Apr 16.
Major depressive disorder (MDD) is a complex state-dependent psychiatric illness for which biomarkers linking psychophysical, biochemical, and psychopathological changes remain yet elusive, though. Earlier studies demonstrate reduced GABA in lower-order occipital cortex in acute MDD leaving open its validity and significance for higher-order visual perception, though. The goal of our study is to fill that gap by combining psychophysical investigation of visual perception with measurement of GABA concentration in middle temporal visual area (hMT+) in acute depressed MDD. Psychophysically, we observe a highly specific deficit in visual surround motion suppression in a large sample of acute MDD subjects which, importantly, correlates with symptom severity. Both visual deficit and its relation to symptom severity are replicated in the smaller MDD sample that received MRS. Using high-field 7T proton Magnetic resonance spectroscopy (H-MRS), acute MDD subjects exhibit decreased GABA concentration in visual MT+ which, unlike in healthy subjects, no longer correlates with their visual motion performance, i.e., impaired SI. In sum, our combined psychophysical-biochemical study demonstrates an important role of reduced occipital GABA for altered visual perception and psychopathological symptoms in acute MDD. Bridging the gap from the biochemical level of occipital GABA over visual-perceptual changes to psychopathological symptoms, our findings point to the importance of the occipital cortex in acute depressed MDD including its role as candidate biomarker.
重度抑郁症(MDD)是一种复杂的状态依赖性精神疾病,尽管目前仍缺乏将心理物理学、生化和精神病理学变化联系起来的生物标志物。早期的研究表明,急性 MDD 患者的下顶叶皮层中的 GABA 减少,尽管如此,其对于高级视觉感知的有效性和意义仍未确定。我们的研究旨在通过将视觉感知的心理物理学研究与中间颞叶视觉区(hMT+)中 GABA 浓度的测量相结合,来填补这一空白。在心理物理学方面,我们在大量急性 MDD 患者中观察到视觉环绕运动抑制的高度特异性缺陷,重要的是,这种缺陷与症状严重程度相关。在接受 MRS 的较小 MDD 样本中,既复制了视觉缺陷及其与症状严重程度的关系。使用高场 7T 质子磁共振波谱(H-MRS),急性 MDD 患者在视觉 MT+中表现出 GABA 浓度降低,与健康受试者不同,其视觉运动表现不再与 GABA 浓度相关,即 SI 受损。总之,我们的综合心理物理学-生物化学研究表明,降低的枕叶 GABA 对急性 MDD 中改变的视觉感知和精神病理学症状具有重要作用。从生化水平上的枕叶 GABA 跨越视觉感知变化到精神病理学症状,我们的发现表明了急性抑郁 MDD 中枕叶皮层的重要性,包括其作为候选生物标志物的作用。