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Role of Mesolimbic Brain-Derived Neurotrophic Factor in Depression

机译:培养基脑衍生的神经营养因子在抑郁症中的作用

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摘要

Brain-derived neurotrophic factor (BDNF) is widely accepted as being critical for neural and synaptic plasticity throughout the nervous system. Recent work has shown that BDNF in the mesolimbic dopamine (DA) circuit, originating in ventral tegmental area DA neurons that project to the nucleus accumbens, is crucial in the development of depressive-like behaviors following exposure to chronic social defeat stress in mice. Whereas BDNF modulates DA signaling in encoding responses to acute defeat stress, BDNF signaling alone appears to be responsible for the behavioral effects after chronic social defeat stress. Very different patterns are seen with another widely used chronic stress paradigm in mice, chronic mild stress (also known as chronic variable or unpredictable stress), where DA signaling, but not BDNF signaling, is primarily responsible for the behavioral effects observed. This review discusses the molecular, cellular, and circuit basis of this dramatic discrepancy, which appears to involve the nature of the stress, its severity and duration, and its effects on distinct cell types within the ventral tegmental area-to-nucleus accumbens mesolimbic circuit.
机译:脑衍生的神经营养因子(BDNF)被广泛被认为是在整个神经系统中的神经和突触可塑性至关重要。最近的工作表明,在培养的多巴胺(DA)电路中的BDNF,源于腹侧腹部的脑神经元,其在核心宫内的达神经元在暴露于小鼠暴露于慢性社会失败胁迫之后的抑郁样行为的发展至关重要。而BDNF调制在编码急性失败应力的响应时DA信令,单独的BDNF信令似乎负责慢性社会失败压力后的行为效应。在小鼠中,慢性轻度压力​​(也称为慢性变量或不可预测的应力),慢性轻度胁迫(也称为慢性变量或不可预测的应力),其中慢性轻度胁迫(也不是BDNF信号传导,主要是对观察到的行为效应负责的慢性低胁迫范例。本综述讨论了这种显着差异的分子,细胞和电路,似乎涉及应力的性质,其严重程度和持续时间,以及其对腹侧腹膜核叶蛋白镁蛋白镁蛋白镁蛋白电路中不同细胞类型的影响。

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