Laboratorio Cajal de Circuitos Corticales (CTB), Universidad Politécnica de Madrid, Campus Montegancedo S/N, Pozuelo de Alarcón, Madrid, Spain.
J Alzheimers Dis. 2012;29(4):841-52. doi: 10.3233/JAD-2012-112036.
The output of cortical pyramidal cells reflects the balance between excitatory inputs of cortical and subcortical origin, and inhibitory inputs from distinct populations of cortical GABAergic interneurons, each of which selectively innervate different domains of neuronal pyramidal cells (i.e., dendrites, soma and axon initial segment [AIS]). In Alzheimer's disease (AD), the presence of amyloid-β (Aβ) plaques alters the synaptic input to pyramidal cells in a number of ways. However, the effects of Aβ plaques on the AIS have still not been investigated to date. This neuronal domain is involved in input integration, as well as action potential initiation and propagation, and it exhibits Ca2+- and activity-dependent structural plasticity. The AIS is innervated by GABAergic axon terminals from chandelier cells, which are thought to exert a strong influence on pyramidal cell output. In the AβPP/PS1 transgenic mouse model of AD, we have investigated the effects of Aβ plaques on the morphological and neurochemical features of the AIS, including the cisternal organelle, using immunocytochemistry and confocal microscopy, as well as studying the innervation of the AIS by chandelier cell axon terminals. There is a strong reduction in GABAergic terminals that appose AIS membrane surfaces that are in contact with Aβ plaques, indicating altered inhibitory synapsis at the AIS. Thus, despite a lack of gross structural alterations in the AIS, this decrease in GABAergic innervation may deregulate AIS activity and contribute to the hyperactivity of neurons in contact with Aβ plaques.
大脑皮层锥体神经元的输出反映了皮质和皮质下起源的兴奋性输入,以及来自不同皮质 GABA 能中间神经元群体的抑制性输入之间的平衡,这些中间神经元分别选择性地支配神经元锥体细胞的不同区域(即树突、胞体和轴突起始段[AIS])。在阿尔茨海默病(AD)中,淀粉样β(Aβ)斑块的存在以多种方式改变了对锥体细胞的突触输入。然而,迄今为止,Aβ斑块对 AIS 的影响仍未得到研究。该神经元区域参与输入整合以及动作电位的起始和传播,并表现出 Ca2+和活动依赖性结构可塑性。AIS 由来自篮状细胞的 GABA 能轴突末梢支配,这些细胞被认为对锥体细胞的输出有很大的影响。在 AD 的 AβPP/PS1 转基因小鼠模型中,我们使用免疫细胞化学和共聚焦显微镜研究了 Aβ斑块对 AIS 的形态和神经化学特征的影响,包括 cisternal 细胞器,以及研究篮状细胞轴突末梢对 AIS 的支配。与接触 Aβ斑块的 AIS 膜表面相邻的 GABA 能末梢强烈减少,表明 AIS 处的抑制性突触发生改变。因此,尽管 AIS 没有明显的结构改变,但 GABA 能传入的这种减少可能会使 AIS 活动失调,并导致与 Aβ斑块接触的神经元过度活跃。