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首页> 外文期刊>The Journal of Physiology >Gain modulation by serotonin in pyramidal neurones of the rat prefrontal cortex.
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Gain modulation by serotonin in pyramidal neurones of the rat prefrontal cortex.

机译:血清素在大鼠前额叶皮层锥体神经元中的增益调节。

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Serotonin (5-HT) is widely implicated in brain functions and diseases. The vertebrate brain is extensively innervated by 5-HT fibres originating from the brain stem, and 5-HT axon terminals interact with other neurones in complex ways. The cellular mechanisms underlying 5-HT function in the brain are not well understood. The present study examined the effect of 5-HT on the responsiveness of neurones in the neocortex. Using patch-clamp recording in acute slices, we showed that 5-HT substantially increased the slope (gain) of the firing rate-current curve in layer 5 pyramidal neurones of the rat prefrontal cortex. The effect of 5-HT on gain is confined to the range of firing rate (0-10 Hz) that is known to be behaviourally relevant. 5-HT also changed current threshold for spike train generation, but this effect was inconsistent, and was independent of the effect on gain. The gain modulation by 5-HT was mediated by 5-HT2 receptors, and involved postsynaptic mechanisms. 5-HT2-mediated gain increase could not be attributed to changes in the membrane potential, the input resistance or the properties of action potentials, but was associated with a reduction of the afterhyperpolarization and an induction of the slow afterdepolarization. Blocking Ca2+ entry with Cd2+ increased the gain by itself and blocked 5-HT2- mediated gain increase. Buffering [Ca2+](i) with 25 mM EGTA also substantially reduced 5-HT2- mediated gain increase. Noradrenaline, which blocked the afterhyperpolarization, also induced a moderate increase in gain. Together, our results suggest that 5-HT may regulate the dynamics of cortical circuits through multiplicative scaling.
机译:5-羟色胺(5-HT)与脑功能和疾病广泛相关。脊椎动物的大脑被源自脑干的5-HT纤维广泛支配,并且5-HT轴突末端以复杂的方式与其他神经元相互作用。大脑中5-HT功能的细胞机制尚不清楚。本研究检查了5-HT对新皮层神经元反应性的影响。在急性切片中使用膜片钳记录,我们显示5-HT实质上增加了大鼠前额叶皮层的第5层锥体神经元的放电速率-电流曲线的斜率(增益)。 5-HT对增益的影响仅限于已知在行为上相关的发射速率范围(0-10 Hz)。 5-HT也改变了产生尖峰脉冲串的电流阈值,但是这种效果是不一致的,并且与增益无关。 5-HT 2受体介导5-HT的增益调节,并涉及突触后机制。 5-HT 2介导的增益增加不能归因于膜电位,输入电阻或动作电位特性的变化,但与超极化后极化的减少和缓慢的去极化后极化的诱导有关。用Cd2 +阻止Ca2 +进入本身会增加增益,并阻止5-HT2介导的增益增加。用25 mM EGTA缓冲[Ca2 +](i)也大大减少了5-HT2介导的增益增加。去甲肾上腺素能阻止超极化,也引起增益的适度增加。在一起,我们的结果表明5-HT可能通过乘法缩放调节皮质回路的动力学。

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