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青少年时期接触尼古丁会导致成年后小鼠岛叶锥体神经元的突触可塑性和内在兴奋性发生变化。

Nicotine Exposure during Adolescence Leads to Changes of Synaptic Plasticity and Intrinsic Excitability of Mice Insular Pyramidal Cells at Later Life.

机构信息

Department of Oral Physiology, Osaka University Graduate School of Dentistry, Suita 565-0871, Japan.

Department of Neurophysiology, Hyogo College of Medicine, Nishinomiya 663-8501, Japan.

出版信息

Int J Mol Sci. 2021 Dec 21;23(1):34. doi: 10.3390/ijms23010034.

Abstract

To find satisfactory treatment for nicotine addiction, synaptic and cellular mechanisms should be investigated comprehensively. Synaptic transmission, plasticity and intrinsic excitability in various brain regions are known to be altered by acute nicotine exposure. However, it has not been addressed whether and how nicotine exposure during adolescence alters these synaptic events and intrinsic excitability in the insular cortex in adulthood. To address this question, we performed whole-cell patch-clamp recordings to examine the effects of adolescent nicotine exposure on synaptic transmission, plasticity and intrinsic excitability in layer V pyramidal neurons (PNs) of the mice insular cortex five weeks after the treatment. We found that excitatory synaptic transmission and potentiation were enhanced in these neurons. Following adolescent nicotine exposure, insular layer V PNs displayed enhanced intrinsic excitability, which was reflected in changes in relationship between current strength and spike number, inter-spike interval, spike current threshold and refractory period. In addition, spike-timing precision evaluated by standard deviation of spike timing was decreased following nicotine exposure. Our data indicate that adolescent nicotine exposure enhances synaptic transmission, plasticity and intrinsic excitability in layer V PNs of the mice insular cortex at later life, which might contribute to severe nicotine dependence in adulthood.

摘要

为了找到尼古丁成瘾的满意治疗方法,应该全面研究突触和细胞机制。已知急性尼古丁暴露会改变各种脑区的突触传递、可塑性和内在兴奋性。然而,目前还不清楚在青春期接触尼古丁是否以及如何改变成年后大脑岛叶皮层中的这些突触事件和内在兴奋性。为了解决这个问题,我们进行了全细胞膜片钳记录,以检查青春期尼古丁暴露对处理后五周的小鼠岛叶皮层第 V 层锥体神经元 (PN) 的突触传递、可塑性和内在兴奋性的影响。我们发现这些神经元中的兴奋性突触传递和增强增强了。在青春期接触尼古丁后,岛叶皮层第 V 层 PNs 表现出增强的内在兴奋性,这反映在电流强度和脉冲数之间的关系、脉冲间隔、脉冲电流阈值和不应期的变化中。此外,通过脉冲定时标准偏差评估的脉冲定时精度在尼古丁暴露后降低。我们的数据表明,青春期尼古丁暴露增强了成年后小鼠岛叶皮层第 V 层 PNs 的突触传递、可塑性和内在兴奋性,这可能导致成年后严重的尼古丁依赖。

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