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Calcium(2+) currents in pyramidal cells of the rat sensorimotor cortex.

机译:大鼠感觉运动皮层锥体细胞中的钙(2+)电流。

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摘要

Since Ca2+ influx via voltage-gated Ca2+ channels has important consequences in terms of neuronal function, this dissertation addresses the general question: Why do pyramidal cells express all 6 HVA channel types? In order to do so we used the whole-cell patch clamp technique to record from acutely-dissociated neocortical pyramidal cells determined by projection targets. We used voltage steps and pharmacology to study the distribution of the Ca2+ channel types among three pyramidal cell types. The combination of voltage steps, pharmacology, and RT-PCR was used to characterize the modulation of Ca2+ currents by muscarine. Action potential waveforms were used to study Ca2+ currents in terms of the timing of current entry, the proportions of the Ca2+ channel types contributing to the whole cell current, and the degree to which the currents are modulated and inactivate.; First, we found that Ca2+ channel types are differentially distributed between particular types of pyramidal cells (defined by their projection targets: Chapter 3). Second, we found that activation of acetylcholine-muscarinic receptors led to modulation of HVA currents through two distinct pathways (Chapter 4). Finally, we used action potential waveforms to perform a detailed examination of factors influencing Ca2+ entry during spikes (Chapter 5). In that chapter we discovered that some of our hypotheses concerning the roles of the various Ca2+ subtypes, which were based upon studies using voltage steps were relevant to more physiological conditions, whereas other hypotheses were not (Chapter 5).
机译:由于通过电压门控的Ca2 +通道流入Ca2 +对于神经元功能具有重要的影响,因此本文提出了一个普遍的问题:为什么锥体细胞表达所有6种HVA通道类型?为了做到这一点,我们使用了全细胞膜片钳技术来记录由投射目标决定的急性分离的新皮质锥体细胞。我们使用电压阶跃和药理学研究了三种锥体细胞之间Ca2 +通道类型的分布。电压阶跃,药理学和RT-PCR的结合用于表征毒蕈碱对Ca2 +电流的调节作用。动作电位波形用于研究Ca2 +电流的时间,包括电流进入的时间,Ca2 +通道类型对整个电池电流的贡献比例以及电流调制和失活的程度。首先,我们发现Ca2 +通道类型在特定类型的锥体细胞(由其投射目标定义:第3章)之间有差异地分布。其次,我们发现乙酰胆碱-毒蕈碱受体的激活通过两个不同的途径导致HVA电流的调节(第4章)。最后,我们使用动作电位波形对尖峰期间影响Ca2 +进入的因素进行了详细检查(第5章)。在该章中,我们发现一些关于各种Ca2 +亚型作用的假说,这些假说基于使用电压阶跃进行的研究,与更多的生理条件相关,而其他假说则无关(第5章)。

著录项

  • 作者

    Stewart, Ansalan Erlette.;

  • 作者单位

    The University of Tennessee Health Science Center.;

  • 授予单位 The University of Tennessee Health Science Center.;
  • 学科 Biology Neuroscience.; Biophysics Medical.
  • 学位 Ph.D.
  • 年度 1999
  • 页码 201 p.
  • 总页数 201
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 神经科学;生物物理学;
  • 关键词

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