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Postnatal development of electrophysiological properties of principal neurons in the rat basolateral amygdala

机译:大鼠基底外侧杏仁核中主要神经元的电生理特性的产后发育

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摘要

The basolateral amygdala (BLA) is critically involved in the pathophysiology of psychiatric disorders, which often emerge during brain development. Several studies have characterized postnatal changes to the morphology and biochemistry of BLA neurons, and many more have identified sensitive periods of emotional maturation. However, it is impossible to determine how BLA development contributes to emotional development or the aetiology of psychiatric disorders because no study has characterized the physiological maturation of BLA neurons. We addressed this critical knowledge gap for the first time using whole-cell patch clamp recording in rat BLA principal neurons to measure electrophysiological properties at postnatal day (P)7, P10, P14, P21, P28 and after P35. We show that intrinsic properties of these neurons undergo significant transitions before P21 and reach maturity around P28. Specifically, we observed significant reductions in input resistance and membrane time constant of nearly 10- and 4-fold, respectively, from P7 to P28. The frequency selectivity of these neurons to input also changed significantly, with peak resonance frequency increasing from 1.0 Hz at P7 to 5.7 Hz at P28. In the same period, maximal firing frequency significantly increased and doublets and triplets of action potentials emerged. Concomitantly, individual action potentials became significantly faster, firing threshold hyperpolarized 6.7 mV, the medium AHP became faster and shallower, and a fast AHP emerged. These results demonstrate neurons of the BLA undergo vast change throughout postnatal development, and studies of emotional development and treatments for juvenile psychiatric disorders should consider the dynamic physiology of the immature BLA.
机译:基底外侧杏仁核(BLA)严重参与精神疾病的病理生理,这种疾病通常在大脑发育过程中出现。几项研究已经表征了出生后BLA神经元的形态和生化变化,并且更多的研究已经确定了情绪成熟的敏感时期。然而,由于尚无研究表明BLA神经元的生理成熟,因此无法确定BLA的发育如何促进情绪发展或精神疾病的病因。我们首次在大鼠BLA主要神经元中使用全细胞膜片钳记录来解决这个关键的知识鸿沟,以测量产后(P)7,P10,P14,P21,P28和P35之后的电生理特性。我们表明,这些神经元的内在特性在P21之前经历了明显的转变,并在P28附近达到成熟。具体来说,我们观察到输入电阻和膜时间常数从P7到P28分别显着降低了近10倍和4倍。这些神经元对输入的频率选择性也发生了显着变化,峰值共振频率从P7的1.0 Hz增加到P28的5.7 Hz。在同一时期,最大射击频率显着增加,动作电位出现了双重和三重态。随之而来的是,单个动作电位显着变快,激发阈值超极化6.7 mV,中等AHP变快和变浅,并且出现了快速AHP。这些结果表明,BLA的神经元在整个出生后的发展过程中都发生了巨大变化,对于情绪发育和青少年精神病治疗的研究应考虑未成熟BLA的动态生理学。

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