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大鼠额叶皮层V层非锥体神经元的生理亚群与小白蛋白和钙结合蛋白D28k免疫反应性神经元的相关性

Correlation of physiological subgroupings of nonpyramidal cells with parvalbumin- and calbindinD28k-immunoreactive neurons in layer V of rat frontal cortex.

作者信息

Kawaguchi Y, Kubota Y

机构信息

Laboratory for Neural Systems, Frontier Research Program, Institute of Physical and Chemical Research (RIKEN), Wako, Japan.

出版信息

J Neurophysiol. 1993 Jul;70(1):387-96. doi: 10.1152/jn.1993.70.1.387.

Abstract
  1. To test the hypothesis that physiologically and morphologically different cortical nonpyramidal cells express different calcium-binding proteins, whole-cell current-clamp recording in vitro was combined with intracellular staining and double immunofluorescence in layer V of frontal cortex of rats 16-20 days old. 2. Nonpyramidal cells were first characterized as fast-spiking (FS) or low-threshold spike (LTS) cells, injected with biocytin, and subsequently stained immunohistochemically for parvalbumin and calbindinD28k. 3. FS cells were identified by input resistances < 350 M omega, spike width at half amplitude < 0.8 ms, and virtually no spike frequency adaptation of spike trains by depolarizing pulses. LTS cells were identified by input resistances > 350 M omega, spike width at half amplitude > 0.8 ms, and the discharge of low-threshold spikes from hyperpolarized potentials. Repetitive firing could be induced by a combination of stimulation-induced excitatory postsynaptic potentials with depolarization in FS cells. Repetitive firing was not observed in LTS cells under these conditions. 4. After biocytin injection of layer V cells characterized in this way, subsequent double immunostaining showed that all biocytin-labeled parvalbumin-immunoreactive cells (n = 18) belonged to the FS cells (FS-PV cells), whereas all biocytin-labeled calbindinD28k-immunoreactive cells (n = 10) belonged to the LTS cells (LTS-Calb cells). 5. FS-PV cells had smooth or sparsely spiny dendrites, whereas LTS-Calb cells had dendrites with a modest number of spines but fewer than pyramidal cells. FS-PV cells showed denser axonal branches near their somata and extended axons in a more horizontal direction. Some of them could be identified as basket cells by the presence of terminal boutons surrounding somata of other cells. LTS-Calb cells extended their main axons more vertically up to layer I. 6. Double immunofluorescent staining revealed that very few cells in layer V showed immunoreactivity for both calcium-binding proteins but that most cells immunoreactive for the calcium-binding proteins in layer V were also immunoreactive for gamma-aminobutyric acid. 7. These results suggest that GABAergic nonpyramidal cells in layer V of neocortex can be divided into two functional groups on the basis of different firing modes, axonal distributions, and calcium-binding protein immunoreactivity: 1) FS-PV cells show repetitive firing by synaptic activation, have axonal arborizations that are more dense near their somata and oriented horizontally, and the cells exhibit parvalbumin immunoreactivity and 2) LTS cells show low-threshold spikes, have more vertical axonal arborizations up to layer I, and exhibit calbindinD28K immunoreactivity.
摘要
  1. 为了验证生理和形态不同的皮质非锥体神经元表达不同钙结合蛋白这一假设,将16 - 20日龄大鼠额叶皮质第V层的全细胞电流钳记录与细胞内染色及双重免疫荧光相结合。2. 非锥体神经元首先被鉴定为快发放(FS)或低阈值发放(LTS)细胞,注射生物胞素,随后进行免疫组织化学染色检测小白蛋白和钙结合蛋白D28k。3. FS细胞通过输入电阻<350 MΩ、半峰宽<0.8 ms以及去极化脉冲几乎不引起动作电位频率适应性来鉴定。LTS细胞通过输入电阻>350 MΩ、半峰宽>0.8 ms以及超极化电位时低阈值动作电位的发放来鉴定。FS细胞中,刺激诱导的兴奋性突触后电位与去极化相结合可诱导重复放电。在这些条件下,LTS细胞未观察到重复放电。4. 对以这种方式鉴定的第V层细胞注射生物胞素后,随后的双重免疫染色显示,所有生物胞素标记的小白蛋白免疫反应性细胞(n = 18)属于FS细胞(FS - PV细胞),而所有生物胞素标记的钙结合蛋白D28k免疫反应性细胞(n = 10)属于LTS细胞(LTS - Calb细胞)。5. FS - PV细胞具有光滑或稀疏有棘的树突,而LTS - Calb细胞的树突有一定数量的棘但比锥体神经元少。FS - PV细胞在其胞体附近显示出更密集的轴突分支,并在更水平的方向延伸轴突。其中一些细胞可通过存在围绕其他细胞胞体的终末扣结而被鉴定为篮状细胞。LTS - Calb细胞将其主要轴突更垂直地向上延伸至第I层。6. 双重免疫荧光染色显示,第V层中很少有细胞对两种钙结合蛋白均显示免疫反应性,但第V层中大多数对钙结合蛋白有免疫反应性的细胞对γ - 氨基丁酸也有免疫反应性。7. 这些结果表明,新皮质第V层的GABA能非锥体神经元可根据不同的放电模式、轴突分布和钙结合蛋白免疫反应性分为两个功能组:1)FS - PV细胞通过突触激活表现出重复放电,在其胞体附近有更密集的轴突分支且呈水平方向,这些细胞表现出小白蛋白免疫反应性;2)LTS细胞表现出低阈值动作电位,有更垂直的轴突分支直至第I层,并表现出钙结合蛋白D28K免疫反应性。

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