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大鼠视觉皮层第2/3层锥体神经元突触传递的层特异性胆碱能调节

Layer-specific cholinergic modulation of synaptic transmission in layer 2/3 pyramidal neurons of rat visual cortex.

作者信息

Cho Kwang-Hyun, Lee Seul-Yi, Joo Kayoung, Rhie Duck-Joo

机构信息

Department of Physiology, College of Medicine, The Catholic University of Korea, Seoul 06591, Korea.

出版信息

Korean J Physiol Pharmacol. 2019 Sep;23(5):317-328. doi: 10.4196/kjpp.2019.23.5.317. Epub 2019 Aug 26.

Abstract

It is known that top-down associative inputs terminate on distal apical dendrites in layer 1 while bottom-up sensory inputs terminate on perisomatic dendrites of layer 2/3 pyramidal neurons (L2/3 PyNs) in primary sensory cortex. Since studies on synaptic transmission in layer 1 are sparse, we investigated the basic properties and cholinergic modulation of synaptic transmission in layer 1 and compared them to those in perisomatic dendrites of L2/3 PyNs of rat primary visual cortex. Using extracellular stimulations of layer 1 and layer 4, we evoked excitatory postsynaptic current/potential in synapses in distal apical dendrites (L1-EPSC/L1-EPSP) and those in perisomatic dendrites (L4-EPSC/L4-EPSP), respectively. Kinetics of L1-EPSC was slower than that of L4-EPSC. L1-EPSC showed presynaptic depression while L4-EPSC was facilitating. In contrast, inhibitory postsynaptic currents showed similar paired-pulse ratio between layer 1 and layer 4 stimulations with depression only at 100 Hz. Cholinergic stimulation induced presynaptic depression by activating muscarinic receptors in excitatory and inhibitory synapses to similar extents in both inputs. However, nicotinic stimulation enhanced excitatory synaptic transmission by ~20% in L4-EPSC. Rectification index of AMPA receptors and AMPA/NMDA ratio were similar between synapses in distal apical and perisomatic dendrites. These results provide basic properties and cholinergic modulation of synaptic transmission between distal apical and perisomatic dendrites in L2/3 PyNs of the visual cortex, which might be important for controlling information processing balance depending on attentional state.

摘要

众所周知,自上而下的联合输入终止于第1层的远端顶端树突,而自下而上的感觉输入则终止于初级感觉皮层第2/3层锥体神经元(L2/3 PyNs)的胞周树突。由于关于第1层突触传递的研究较少,我们研究了第1层突触传递的基本特性和胆碱能调制,并将其与大鼠初级视觉皮层L2/3 PyNs胞周树突的突触传递特性进行比较。通过对第1层和第4层进行细胞外刺激,我们分别在远端顶端树突(L1-EPSC/L1-EPSP)和胞周树突(L4-EPSC/L4-EPSP)的突触中诱发兴奋性突触后电流/电位。L1-EPSC的动力学比L4-EPSC慢。L1-EPSC表现出突触前抑制,而L4-EPSC表现为易化。相反,抑制性突触后电流在第1层和第4层刺激之间显示出相似的双脉冲比率,仅在100 Hz时出现抑制。胆碱能刺激通过激活兴奋性和抑制性突触中的毒蕈碱受体,在两种输入中以相似的程度诱导突触前抑制。然而,烟碱刺激使L4-EPSC中的兴奋性突触传递增强了约20%。远端顶端树突和胞周树突突触中AMPA受体的整流指数和AMPA/NMDA比率相似。这些结果提供了视觉皮层L2/3 PyNs中远端顶端树突和胞周树突之间突触传递的基本特性和胆碱能调制,这可能对根据注意力状态控制信息处理平衡很重要。

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