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脑源性神经营养因子杂合子小鼠成年躯体感觉皮层中突触形成的改变。

Altered synapse formation in the adult somatosensory cortex of brain-derived neurotrophic factor heterozygote mice.

作者信息

Genoud Christel, Knott Graham W, Sakata Kazuko, Lu Bai, Welker Egbert

机构信息

Institut de Biologie Cellulaire et de Morphologie, 1005 Lausanne, Switzerland.

出版信息

J Neurosci. 2004 Mar 10;24(10):2394-400. doi: 10.1523/JNEUROSCI.4040-03.2004.

Abstract

Increased sensory stimulation in the adult whisker-to-barrel pathway induces the expression of BDNF as well as synapse formation in cortical layer IV. Here, we investigated whether BDNF plays a role in the alterations of connectivity between neurons by analyzing the ultrastructure of the BDNF heterozygote mouse, characterized by a reduced level of BDNF expression. Using serial section electron microscopy, we measured synapse density, spine morphology, and synaptic vesicle distribution to show that mice with a reduced level of BDNF have a barrel neuropil that is indistinguishable from wild-type controls. After 24 hr of whisker stimulation, however, there is no indication of synapse formation in the heterozygous mouse. Whereas the balance between excitatory and inhibitory synapses is modified in the controls, it remains constant in the heterozygotes. The distribution of synaptic vesicles in excitatory synapses is the same in heterozygous and wild-type mice and is not influenced by the stimulation paradigm. Spine volume, however, is unchanged by stimulation in the wild-type animals, but does increase significantly in the heterozygous animal. These results provide evidence that, in vivo, BDNF plays an important role in the structural rearrangement of adult cortical circuitry as a consequence of an increased sensory input.

摘要

成年小鼠胡须到桶状皮质通路中感觉刺激的增加会诱导脑源性神经营养因子(BDNF)的表达以及皮质第IV层中突触的形成。在此,我们通过分析BDNF杂合子小鼠的超微结构来研究BDNF是否在神经元之间的连接改变中发挥作用,该小鼠的特征是BDNF表达水平降低。使用连续切片电子显微镜,我们测量了突触密度、棘突形态和突触小泡分布,结果表明BDNF水平降低的小鼠的桶状神经纤维网与野生型对照没有区别。然而,在胡须刺激24小时后,杂合子小鼠中没有突触形成的迹象。在对照中,兴奋性和抑制性突触之间的平衡发生了改变,而在杂合子中则保持不变。杂合子和野生型小鼠兴奋性突触中突触小泡的分布相同,且不受刺激模式的影响。然而,野生型动物的棘突体积在刺激后没有变化,但在杂合子动物中确实显著增加。这些结果提供了证据,表明在体内,由于感觉输入增加,BDNF在成年皮质神经回路的结构重排中起重要作用。

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