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首页> 外文期刊>The Journal of Physiology >Reversed somatodendritic I(h) gradient in a class of rat hippocampal neurons with pyramidal morphology.
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Reversed somatodendritic I(h) gradient in a class of rat hippocampal neurons with pyramidal morphology.

机译:一类具有锥体形态的大鼠海马神经元中的逆体细胞树突状I(h)梯度。

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摘要

In CA1 and neocortical pyramidal neurons, I(h) is present primarily in the dendrites. We asked if all neurons of a pyramidal morphology have a similar density of I(h). We characterized a novel class of hippocampal neurons with pyramidal morphology found in the stratum radiatum, which we termed the 'pyramidal-like principal' (PLP) neuron. Morphological similarities to pyramidal neurons were verified by filling the neurons with biocytin. PLPs did not stain for markers associated with interneurons, and projected to both the septum and olfactory bulb. By using cell-attached patch-clamp recordings, we found that these neurons expressed a high density of I(h) in the soma that declined to a lower density in the dendrites, a pattern that is reversed compared to pyramidal neurons. The voltage-dependent activation and activation time constants of I(h) in the PLPs were similar to pyramidal neurons. Whole-cell patch-clamp recordings from the soma and dendrites of PLP neurons showed no significant differences in input resistance and local temporal summation between the two locations. Blockade of I(h) by ZD7288 increased the input resistance and temporal summation of simulated EPSPs, as in pyramidal neurons. When NMDA receptors were blocked, temporal summation at the soma of distal synaptic potentials was similar to that seen with current injections at the soma, suggesting a 'normalization' of temporal summation similar to that observed in pyramidal neurons. Thus, we have characterized a principal neuronal subtype in the hippocampus with a similar morphology but reversed I(h) somatodendritic gradient to that previously observed in CA1 hippocampal and neocortical pyramidal neurons.
机译:在CA1和新皮质锥体神经元中,I(h)主要存在于树突中。我们询问是否所有金字塔形神经元都具有相似的I(h)密度。我们以在放射状层中发现的具有金字塔形形态的新型海马神经元为特征,我们将其称为“金字塔状主体”(PLP)神经元。通过用生物胞素填充神经元来验证与锥体神经元的形态相似性。 PLP不染色与中间神经元相关的标志物,并投射到隔垫和嗅球上。通过使用附着细胞的膜片钳记录,我们发现这些神经元在躯体中表达高密度的I(h),在树突中下降到较低的密度,与锥体神经元相比,这种模式是相反的。 PLP中I(h)的电压依赖性激活和激活时间常数类似于锥体神经元。来自PLP神经元的体细胞和树突的全细胞膜片钳记录显示,在两个位置之间的输入阻力和局部时间总和上没有显着差异。如在锥体神经元中一样,ZD7288对I(h)的封锁增加了模拟EPSP的输入电阻和时间总和。当NMDA受体被阻断时,远端突触电位的躯体的时间总和与当前在躯体上注射所看到的相似,这表明时间总和的“正常化”类似于在锥体神经元中观察到的。因此,我们已经表征了海马中的主要神经元亚型,具有相似的形态,但与以前在CA1海马和新皮质锥体神经元中观察到的I(h)体树突状梯度相反。

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