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噻奈普汀对海马神经元的神经营养作用:一种蛋白质组学方法。

Neurotrophic effects of tianeptine on hippocampal neurons: a proteomic approach.

机构信息

Graduate Institute of Medical Sciences, National Defense Medical Center, Taipei, Taiwan.

出版信息

J Proteome Res. 2010 Feb 5;9(2):936-44. doi: 10.1021/pr900799b.

Abstract

Tianeptine, an atypical tricyclic antidepressant with unique characteristics, can improve memory and prevent stress-induced hippocampal damage. It has neuroplastic and neurotrophic effects on hippocampal neurons and can prevent dendritic atrophy of the hippocampus in certain pathological conditions. To obtain a better understanding of the underlying mechanisms, we performed a proteomic analysis on tianeptine-treated hippocampal neurons. Primary hippocampal neurons were prepared from fetal Sprague-Dawley rats, eliminating glia cells by addition of cytosine beta-D-arabinofuranoside at day 2 in vitro (DIV2). The neurons were treated with tianeptine (10 microg/mL) or vehicle at DIV3, then harvested at DIV4 or DIV9 for immunocytochemical analysis of, respectively, neurite outgrowth or synapse formation. A proteomics analysis was performed on DIV4 neurons and the data were confirmed by Western blot analysis. Using specific markers, we demonstrated that tianeptine can augment neurite growth and promote synaptic contacts in cultured hippocampal neurons. The proteomics analysis identified 11 differentially expressed proteins, with roles in neurite growth, metabolism of neurotrophic substances, synaptogenesis, and synaptic activity homeostasis. The data shed light on the mechanisms underlying the neurotrophic effect of tianeptine observed in both animal studies and the clinic.

摘要

天奈普汀是一种具有独特特性的非典型三环抗抑郁药,可改善记忆并预防应激引起的海马损伤。它对海马神经元具有神经可塑性和神经营养作用,可以防止海马在某些病理条件下的树突萎缩。为了更好地了解潜在的机制,我们对天奈普汀处理的海马神经元进行了蛋白质组学分析。原代海马神经元取自胎龄 Sprague-Dawley 大鼠,在体外第 2 天(DIV2)通过添加胞嘧啶-β-D-阿拉伯呋喃糖苷来消除神经胶质细胞。神经元在 DIV3 时用天奈普汀(10 μg/mL)或载体处理,然后在 DIV4 或 DIV9 收获,分别用于神经突生长或突触形成的免疫细胞化学分析。对 DIV4 神经元进行蛋白质组学分析,并通过 Western blot 分析对数据进行了验证。使用特异性标记物,我们证明天奈普汀可以增强培养的海马神经元中的神经突生长并促进突触接触。蛋白质组学分析鉴定出 11 种差异表达蛋白,这些蛋白在神经突生长、神经营养物质代谢、突触发生和突触活动稳态中发挥作用。这些数据阐明了天奈普汀在动物研究和临床观察中观察到的神经营养作用的机制。

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