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神经酸可改善慢性束缚应激小鼠的抑郁样行为和内侧前额叶皮质脱髓鞘。

Nervonic acid improves depression like behaviors and demyelination of medial prefrontal cortex in chronic restraint stress mice.

机构信息

Institute of Pharmacology and Toxicology, State Key Laboratory of Advanced Drug Delivery and Release Systems, College of Pharmaceutical Sciences, Zhejiang University, 310058, Hangzhou, China.

Jinhua Institute of Zhejiang University, 321299, Jinhua, China.

出版信息

Biochem Biophys Res Commun. 2024 Nov 12;733:150696. doi: 10.1016/j.bbrc.2024.150696. Epub 2024 Sep 13.

Abstract

Major depressive disorder (MDD) is a psychiatric disorder characterized by depressed mood, behavioral despair and anhedonia. Demyelination in specific brain regions underlies the pathology of MDD, raising the alleviating demyelination as a potential strategy for MDD therapy. Nervonic acid (NA) has the potential to improve brain demyelination, offering benefits for various neurological disorders. However, its effects on depression remain undetermined. Mice were subjected to 14 days of chronic restraint stress (CRS) to induce depression-like behaviors, and were injected with NA (70 mg/kg) daily. The administration of NA significantly improved depressive-like behaviors in CRS mice. CRS led to significant demyelination in the medial prefrontal cortex (mPFC), which were reversed by NA treatment. In addition, NA ameliorated the upregulation of inflammatory cytokines and downregulation of brain-derived neurotrophic factor, improved the alternations in axonal spines observed in the mPFC of CRS mice. Our results highlighted the potential of NA as an antidepressant, with its benefits likely attributed to its effects in alleviating demyelination in the mPFC.

摘要

重度抑郁症(MDD)是一种以情绪低落、行为绝望和快感缺失为特征的精神障碍。特定脑区的脱髓鞘是 MDD 的病理学基础,因此减轻脱髓鞘被认为是 MDD 治疗的一种潜在策略。神经酸(NA)有改善脑脱髓鞘的潜力,对各种神经疾病有好处。然而,其对抑郁症的影响仍未确定。我们用 14 天的慢性束缚应激(CRS)来诱导抑郁样行为,并用 NA(70mg/kg)每天进行注射。结果显示,NA 可显著改善 CRS 小鼠的抑郁样行为。CRS 导致内侧前额叶皮质(mPFC)明显脱髓鞘,而 NA 治疗可逆转这一现象。此外,NA 还能改善促炎细胞因子的上调和脑源性神经营养因子的下调,改善 CRS 小鼠 mPFC 中观察到的轴突棘的改变。我们的研究结果强调了 NA 作为一种抗抑郁药的潜力,其益处可能归因于其减轻 mPFC 脱髓鞘的作用。

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