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巴戟天寡糖通过上调 GLUT3 改善突触活性改善脑卒中后大鼠抑郁样行为。

Morinda officinalis oligosaccharides ameliorate depressive-like behaviors in poststroke rats through upregulating GLUT3 to improve synaptic activity.

机构信息

Department of Neurology, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, Hubei, China.

Beijing Tongrentang Co., Ltd. Institute of Science, Beijing, China.

出版信息

FASEB J. 2020 Oct;34(10):13376-13395. doi: 10.1096/fj.201902546RR. Epub 2020 Aug 19.

Abstract

Poststroke depression (PSD) is one of the most common psychiatric diseases afflicting stroke survivors, yet the underlying mechanism is poorly understood. The pathophysiology of PSD is presumably multifactorial, involving ischemia-induced disturbance in the context of psychosocial distress. The homeostasis of glucose metabolism is crucial to neural activity. In this study, we showed that glucose consumption was decreased in the medial prefrontal cortex (mPFC) of PSD rats. The suppressed glucose metabolism was due to decreased glucose transporter-3 (GLUT3) expression, the most abundant and specific glucose transporter of neurons. We also found Morinda officinalis oligosaccharides (MOOs), approved as an antidepressive Chinese medicine, through upregulating GLUT3 expression in the mPFC, improved glucose metabolism, and enhanced synaptic activity, which ultimately ameliorated depressive-like behavior in PSD rats. We further confirmed the mechanism that MOOs induce GLUT3 expression via the PKA/pCREB pathway in PSD rats. Our work showed that MOOs treatment is capable of restoring GLUT3 level to improve depressive-like behaviors in PSD rats. We also propose GLUT3 as a potential therapeutic target for PSD and emphasize the importance of metabolism disturbance in PSD pathology.

摘要

脑卒中后抑郁(PSD)是困扰脑卒中幸存者的最常见精神疾病之一,但发病机制尚不清楚。PSD 的病理生理学推测是多因素的,涉及到心理社会压力下的缺血诱导的紊乱。葡萄糖代谢的内稳态对神经活动至关重要。在这项研究中,我们发现 PSD 大鼠的内侧前额叶皮质(mPFC)葡萄糖消耗减少。葡萄糖代谢的抑制是由于葡萄糖转运蛋白-3(GLUT3)表达减少所致,GLUT3 是神经元中最丰富和最特异的葡萄糖转运蛋白。我们还发现,作为一种抗抑郁的中药,巴戟天寡糖(MOOs)通过上调 mPFC 中的 GLUT3 表达,改善了葡萄糖代谢,增强了突触活性,最终改善了 PSD 大鼠的抑郁样行为。我们进一步证实了 MOOs 通过 PSD 大鼠中的 PKA/cREB 通路诱导 GLUT3 表达的机制。我们的工作表明,MOOs 治疗能够恢复 GLUT3 水平,改善 PSD 大鼠的抑郁样行为。我们还提出 GLUT3 作为 PSD 的潜在治疗靶点,并强调代谢紊乱在 PSD 病理中的重要性。

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