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首页> 外文期刊>Journal of Neuroscience Methods >Single-channel and whole-cell studies of calcium currents in young and aged rat hippocampal slice neurons.
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Single-channel and whole-cell studies of calcium currents in young and aged rat hippocampal slice neurons.

机译:单通道和全细胞研究年轻和老年大鼠海马切片神经元中的钙电流。

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摘要

The hippocampal slice preparation has contributed greatly to analysis of the basic neurophysiology of brain neurons. In addition, because traumatic dissociative procedures are not used, the in vitro slice is particularly well suited for studies of electrophysiological properties of hippocampal neurons in young and aged rodent brain. Using the slice, we have previously observed an aging-dependent enhancement of voltage-activated Ca2+ influx using a combination of intracellular sharp electrode current-clamp and voltage-clamp techniques. The Ca(2+)-dependent afterhyperpolarization as well as the Ca2+ action potential were significantly larger in aged rat neurons. Using the sharp electrode clamp method, similar effects were found for high voltage-activated whole-cell Ca2+ currents. In order to study the mechanistic bases of these aging phenomena at the single-channel level, we have recently focused on recording cell-attached patches from neurons in the partially dissociated hippocampal slice ('zipper' slice). This technique, developed by Gray et al. in 1990, subjects slices to a mild enzymatic treatment resulting in the exposure of individual neurons for patch-clamp procedures. Using this technique, we are currently recording single Ca2+ channel activity in hippocampal slices from 4- to 29-month-old rats.
机译:海马切片的制备对脑神经元的基本神经生理学分析作出了很大贡献。另外,由于不使用创伤性离解程序,因此体外切片特别适合研究年轻和老年啮齿动物大脑中海马神经元的电生理特性。使用切片,我们以前已经观察到了结合细胞内尖锐电极电流钳和电压钳技术对电压激活的Ca2 +内流的老化依赖性增强。 Ca(2 +)依赖后超极化以及Ca 2 +动作电位在老年大鼠神经元中明显更大。使用尖锐的电极钳位方法,发现高压激活的全细胞Ca2 +电流具有类似的效果。为了在单通道水平上研究这些衰老现象的机理基础,我们最近集中在记录部分解离的海马切片(“拉链”切片)中来自神经元的细胞附着斑块。这项技术由Gray等人开发。在1990年,受试者进行了温和的酶处理,导致单个神经元暴露于膜片钳程序中。使用这种技术,我们目前正在记录4个月至29个月大大鼠海马切片中的单个Ca2 +通道活性。

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