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Brain-derived neurotrophic factor differentially modulates excitability of two classes of hippocampal output neurons

机译:脑源性神经营养因子差异性调节两类海马输出神经元的兴奋性

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摘要

Brain-derived neurotrophic factor (BDNF) plays an important role in hippocampus-dependent learning and memory. Canonically, this has been ascribed to an enhancing effect on neuronal excitability and synaptic plasticity in the CA1 region. However, it is the pyramidal neurons in the subiculum that form the primary efferent pathways conveying hippocampal information to other areas of the brain, and yet the effect of BDNF on these neurons has remained unexplored. We present new data that BDNF regulates neuronal excitability and cellular plasticity in a much more complex manner than previously suggested. Subicular pyramidal neurons can be divided into two major classes, which have different electrophysiological and morphological properties, different requirements for the induction of plasticity, and different extrahippocampal projections. We found that BDNF increases excitability in one class of subicular pyramidal neurons yet decreases excitability in the other class. Furthermore, while endogenous BDNF was necessary for the induction of synaptic plasticity in both cell types, BDNF enhanced intrinsic plasticity in one class of pyramidal neurons yet suppressed intrinsic plasticity in the other. Taken together, these data suggest a novel role for BDNF signaling, as it appears to dynamically and bidirectionally regulate the output of hippocampal information to different regions of the brain.
机译:脑源性神经营养因子(BDNF)在海马依赖性学习和记忆中起着重要作用。典型地,这归因于对CA1区域中的神经元兴奋性和突触可塑性的增强作用。然而,是在下丘脑中的锥体神经元形成了主要的传出途径,将海马信息传递到大脑的其他区域,而BDNF对这些神经元的作用仍未探索。我们提出了新的数据,BDNF以比以前建议的复杂得多的方式调节神经元兴奋性和细胞可塑性。亚锥体神经元可分为两大类,它们具有不同的电生理和形态学特性,诱导可塑性的要求不同以及海马的投射不同。我们发现BDNF可以增加一类亚锥状锥体神经元的兴奋性,而降低另一类亚锥性锥体神经元的兴奋性。此外,虽然内源性BDNF对于诱导两种细胞类型的突触可塑性都必不可少,但BDNF增强了一类锥体神经元的固有可塑性,而抑制另一类锥体神经元的固有可塑性。综上所述,这些数据暗示了BDNF信号传导的新作用,因为它似乎动态且双向地调节海马信息向大脑不同区域的输出。

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