Huguenard J R, Hamill O P, Prince D A
Department of Neurology, Stanford University Medical Center, CA 94305.
Proc Natl Acad Sci U S A. 1989 Apr;86(7):2473-7. doi: 10.1073/pnas.86.7.2473.
The voltage-dependent properties that have been directly demonstrated in Purkinje cell and hippocampal pyramidal cell dendrites play an important role in the integrative capacities of these neurons. By contrast, the properties of neocortical pyramidal cell dendritic membranes have been more difficult to assess. Active dendritic conductances near sites of synaptic input would have an important effect on the input-output characteristics of these neurons. In the experiments reported here, we obtained direct evidence for the existence of voltage-dependent Na+ channels on the dendrites of neocortical neurons by using cell-attached patch and whole cell recordings from acutely isolated rat neocortical pyramidal cells. The qualitative and quantitative properties of dendritic and somatic currents were indistinguishable. Insofar as Na+ currents are concerned, the soma and primary apical dendrite can be considered as one relatively uniform compartment. Similar dendritic Na+ currents on dendrites in mature neurons would play an important role in determining the integrative properties of these cortical units.
在浦肯野细胞和海马锥体细胞树突中直接证明的电压依赖性特性,在这些神经元的整合能力中起着重要作用。相比之下,新皮层锥体细胞树突膜的特性则更难评估。突触输入部位附近的主动树突电导会对这些神经元的输入-输出特性产生重要影响。在本文报道的实验中,我们通过对急性分离的大鼠新皮层锥体细胞进行细胞贴附式膜片钳和全细胞记录,获得了新皮层神经元树突上存在电压依赖性钠通道的直接证据。树突电流和体细胞电流的定性和定量特性没有区别。就钠电流而言,胞体和主要顶树突可被视为一个相对统一的区室。成熟神经元树突上类似的树突钠电流在决定这些皮层单元的整合特性方面将发挥重要作用。