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首页> 外文期刊>Journal of Neurophysiology >Effect of depolarizing GABA(A)-mediated membrane responses on excitability of Cajal-Retzius cells in the immature rat neocortex.
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Effect of depolarizing GABA(A)-mediated membrane responses on excitability of Cajal-Retzius cells in the immature rat neocortex.

机译:去极化GABA(A)介导的膜反应对未成熟大鼠新皮层Cajal-Retzius细胞兴奋性的影响。

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In immature neurons activation of ionotropic GABA receptors induces depolarizing membrane responses due to a high intracellular Cl(-) concentration ([Cl(-)](i)). However, it is difficult to draw conclusions about the functional consequences of subthreshold GABAergic depolarizations, since GABAergic membrane shunting and additional effects on voltage-dependent ion channels or action potential threshold must be considered. To systematically investigate factors that determine the GABAergic effect on neuronal excitability we performed whole cell patch-clamp recordings from Cajal-Retzius cells in immature rat neocortex, using [Cl(-)](i) between 10 and 50 mM. The effect of focal GABA application was quantified by measuring various parameters of GABAergic responses including the shift in minimal threshold current (rheobase). The rheobase shift was correlated with other parameters of the GABAergic responses by multiple linear regression analyses with a set of simple mathematical models. Our experiments demonstrate that focal GABA application induces heterogeneous rheobase shifts in Cajal-Retzius cells that could not be predicted reliably from [Cl(-)](i) or the GABAergic membrane depolarization. Implementation of a linear mathematical model, which takes the GABAergic membrane conductance and the difference between action potential threshold and GABA reversal potential into account, resulted in a close correlation between calculated and experimentally obtained rheobase shifts. Addition of a linear term proportional to the GABAergic membrane depolarization improved the accuracy of correlation. The main advantage of using multiple linear regression with simple models is that direction and strength of GABAergic excitability shifts can be analyzed by using only measured parameters of GABAergic responses and with minimal a priori information about cellular parameters.
机译:在未成熟的神经元中,由于高细胞内Cl(-)浓度([Cl(-)](i)),离子型GABA受体的激活诱导去极化膜反应。但是,由于必须考虑GABA能膜分流以及对电压依赖性离子通道或动作电位阈值的其他影响,因此难以得出关于阈下GABA能去极化的功能后果的结论。为了系统地研究决定GABA能对神经元兴奋性影响的因素,我们使用10至50 mM之间的[Cl(-)](i)在未成熟大鼠新皮质的Cajal-Retzius细胞中进行了全细胞膜片钳记录。通过测量各种GABA能反应参数(包括最小阈值电流(流变碱)的变化)来量化局灶性GABA应用的效果。通过一组简单的数学模型进行的多元线性回归分析,流变碱基的移动与GABA能反应的其他参数相关。我们的实验表明,局灶性GABA的应用在Cajal-Retzius细胞中诱导了异质的流变碱基转移,这无法从[Cl(-)](i)或GABA能膜去极化中可靠地预测。线性数学模型的实现将GABA能膜电导以及动作电位阈值和GABA逆转电位之间的差异考虑在内,从而导致计算出的和通过实验获得的流变碱位移之间存在密切的相关性。与GABA能膜去极化成正比的线性项的添加提高了相关的准确性。使用具有简单模型的多元线性回归的主要优势在于,仅通过使用GABA能反应的实测参数,并且只需很少的有关细胞参数的先验信息,即可分析GABA能兴奋性转移的方向和强度。

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