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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Age-related enhancement of the slow outward calcium-activated potassium current in hippocampal CA1 pyramidal neurons in vitro.
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Age-related enhancement of the slow outward calcium-activated potassium current in hippocampal CA1 pyramidal neurons in vitro.

机译:年龄相关的海马CA1锥体神经元中缓慢向外的钙激活钾电流的增强。

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摘要

Aging is associated with learning deficits and a decrease in neuronal excitability, reflected by an enhanced post-burst afterhyperpolarization (AHP), in CA1 hippocampal pyramidal neurons. To identify the current(s) underlying the AHP altered in aging neurons, whole-cell voltage-clamp recording experiments were performed in hippocampal slices from young and aging rabbits. Similar to previous reports, aging neurons were found to rest at more hyperpolarized potentials and have larger AHPs than young neurons. Given that compounds that reduce the slow outward calcium-activated potassium current (sI(AHP)), a major constituent of the AHP, also facilitate learning in aging animals, the sI(AHP) was pharmacologically isolated and characterized. Aging neurons were found to have an enhanced sI(AHP,) the amplitude of which was significantly correlated to the amplitude of the AHP (r = 0.63; p < 0.001). Thus, an enhanced sI(AHP) contributes to the enhanced AHP in aging. No differences were found in the membrane resistance, capacitance, or kinetic and voltage-dependent properties of the sI(AHP). Because enhanced AHP in aging neurons has been hypothesized to be secondary to an enhanced Ca2+ influx via the voltage-gated L-type Ca2+ channels, we further examined the sI(AHP) in the presence of an L-type Ca2+ channel blocker, nimodipine (10 microm). Nimodipine caused quantitatively greater reductions in the sI(AHP) in aging neurons than in young neurons; however, the residual sI(AHP) was still significantly larger in aging neurons than in young neurons. Our data, in conjunction with previous studies showing a correlation between the AHP and learning, suggest that the enhancement of the sI(AHP) in aging is a mechanism that contributes to age-related learning deficits.
机译:衰老与CA1海马锥体神经元爆发后后超极化(AHP)增强反映出学习缺陷和神经元兴奋性降低有关。为了确定衰老的神经元中AHP改变的基础电流,在幼小和衰老的兔子的海马切片中进行了全细胞电压钳记录实验。与以前的报告类似,发现衰老的神经元比年轻的神经元具有更多的超极化电位,并且具有更大的AHP。鉴于降低AHP主要成分的缓慢向外钙激活钾电流(sI(AHP))的化合物也促进了衰老动物的学习,因此对sI(AHP)进行了药理学分离和鉴定。发现衰老的神经元的sI(AHP)增强,其幅度与AHP的幅度显着相关(r = 0.63; p <0.001)。因此,增强的sI(AHP)有助于老化中增强的AHP。膜电阻,电容或sI(AHP)的动力学和电压相关特性均未发现差异。由于已经假设衰老神经元中的AHP增强是通过电压门控L型Ca2 +通道对增强Ca2 +内流的继发,因此我们在存在L型Ca2 +通道阻滞剂尼莫地平(nmodipine)的情况下进一步研究了sI(AHP)。 10微米)。与年轻神经元相比,尼莫地平在衰老的神经元中导致sI(AHP)降低的数量更大;然而,在衰老的神经元中,剩余的sI(AHP)仍显着大于年轻的神经元。我们的数据与先前的研究表明AHP和学习之间存在相关性,这表明衰老中sI(AHP)的增强是导致与年龄有关的学习缺陷的一种机制。

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