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首页> 外文期刊>Neural regeneration research >Deconstructing brain-derived neurotrophic factor actions in adult brain circuits to bridge an existing informational gap in neuro-cell biology
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Deconstructing brain-derived neurotrophic factor actions in adult brain circuits to bridge an existing informational gap in neuro-cell biology

机译:解构成人脑回路中脑源性神经营养因子的作用,以弥合神经细胞生物学中现有的信息鸿沟

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Brain-derived neurotrophic factor (BDNF) plays an important role in neurodevelopment, synaptic plasticity, learning and memory, and in preventing neurodegeneration. Despite decades of investigations into downstream signaling cascades and changes in cellular processes, the mechanisms of how BDNF reshapes circuits in vivo remain unclear. This informational gap partly arises from the fact that the bulk of studies into the molecular actions of BDNF have been performed in dissociated neuronal cultures, while the majority of studies on synaptic plasticity, learning and memory were performed in acute brain slices or in vivo. A recent study by Bowling-Bhattacharya et al., measured the proteomic changes in acute adult hippocampal slices following treatment and reported changes in proteins of neuronal and non-neuronal origin that may in concert modulate synaptic release and secretion in the slice. In this paper, we place these findings into the context of existing literature and discuss how they impact our understanding of how BDNF can reshape the brain.
机译:脑源性神经营养因子(BDNF)在神经发育,突触可塑性,学习和记忆以及预防神经变性中起重要作用。尽管对下游信号传导级联和细胞过程的变化进行了数十年的研究,但BDNF如何在体内重塑电路的机制仍不清楚。这种信息上的差距部分是由于以下事实:对BDNF分子作用的大量研究是在离体神经元文化中进行的,而有关突触可塑性,学习和记忆的大多数研究是在急性脑切片或体内进行的。 Bowling-Bhattacharya等人最近的一项研究测量了治疗后急性成人海马切片的蛋白质组学变化,并报告了神经元和非神经元来源的蛋白质变化,这些变化可能共同调节切片中的突触释放和分泌。在本文中,我们将这些发现放入现有文献中,并讨论它们如何影响我们对BDNF如何重塑大脑的理解。

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