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BDNF 对树突棘形态和海马功能的影响。

BDNF effects on dendritic spine morphology and hippocampal function.

机构信息

Institut für Anatomie und Zellbiologie, Universitätsmedizin Greifswald, Friedrich-Loeffler-Str. 23c, 17487, Greifswald, Germany.

出版信息

Cell Tissue Res. 2018 Sep;373(3):729-741. doi: 10.1007/s00441-017-2782-x. Epub 2018 Feb 15.

Abstract

Neurotrophins, including brain-derived neurotrophic factor (BDNF), are expressed in the hippocampus, as well as their precursors, the pro-neurotrophins. The neurotrophins signal through specific tyrosine kinase receptors and the low affinity receptor p75NTR. Moreover, the pro-neurotrophins are considered to be biologically active by signaling through specific receptors. The neurotrophins, especially BDNF, are involved in processes related to learning and memory. Furthermore, it is thought that BDNF also plays a crucial role in major depression. This points to a role of BDNF as a central regulator of neuronal plasticity within the postnatal hippocampus. Morphological correlates of neuronal plasticity are changes on the level of the dendritic spines and, at least in the dentate gyrus of the hippocampus, on the level of adult neurogenesis. Specific changes in dendritic spines as well as in adult hippocampal neurogenesis can be seen in the context of several forms of learning and memory, and it is known that depression is accompanied by declines in the rate of adult neurogenesis and in spine densities. The possible roles of BDNF in neuronal plasticity within the hippocampus are highlighted in this review by focusing on the morphological components of neuronal plasticity.

摘要

神经递 ,包括脑源性神经营养因子 (BDNF),在海马体中表达,以及它们的前体,神经营养因子原。神经营养因子通过特定的酪氨酸激酶受体和低亲和力受体 p75NTR 发出信号。此外,神经营养因子原被认为通过特定的受体发出信号具有生物活性。神经营养因子,特别是 BDNF,参与与学习和记忆相关的过程。此外,据认为 BDNF 在重度抑郁症中也起着至关重要的作用。这表明 BDNF 作为出生后海马体神经元可塑性的中央调节剂的作用。神经元可塑性的形态学相关物是树突棘水平的变化,至少在海马体的齿状回中,是成年神经发生的水平的变化。在几种形式的学习和记忆中可以看到树突棘和成年海马体神经发生的特定变化,并且已知抑郁症伴随着成年神经发生率和棘密度的下降。本综述通过关注神经元可塑性的形态学成分,突出了 BDNF 在海马体神经元可塑性中的可能作用。

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