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瘦素缺乏型小鼠杏仁核的结构和功能后果。

Structural and functional consequences in the amygdala of leptin-deficient mice.

机构信息

Institut für Anatomie und Zellbiologie, Universitätsmedizin Greifswald, Friedrich Loeffler Str. 23c, 17487, Greifswald, Germany.

Institut für Neurophysiologie, Charité-Universitätsmedizin Berlin, Virchowweg 6, 10117, Berlin, Germany.

出版信息

Cell Tissue Res. 2020 Nov;382(2):421-426. doi: 10.1007/s00441-020-03266-x. Epub 2020 Aug 13.

Abstract

On the one hand, the emotional state can influence food intake and on the other hand, hunger can have an impact on the emotional state. Leptin, which is encoded by the ob gene, is involved in the energy homeostasis and plays a role in development of obesity. Mice deficient for leptin (ob/ob) are obese and display several behavioral alterations. It has been shown that ob/ob mice display striking changes in neuronal plasticity within the limbic system, e.g., hippocampal formation. We focus on alterations in ob/ob mice that can be related to alter processing in another part of the limbic system, the amygdala. ob/ob mice have a higher food consumption than age-matched controls, which might have an impact on the emotional state of these mice. Since the amygdala is involved in emotional processing, we analyze whether ob/ob mice display alterations in plasticity at the electrophysiological and structural level. No changes were seen in dendritic spine densities in the basolateral and lateral (LA) nucleus of the amygdala. Interestingly and in contrast to the hippocampus (Porter et al. 2013), long-term potentiation in the LA was increased in ob/ob mice. Our results indicate that amygdalar and hippocampal synaptic plasticity are regulated in different ways by leptin deficiency in accordance with the different functions of these limbic structures in stress and anxiety.

摘要

一方面,情绪状态可以影响食物摄入,另一方面,饥饿也会对情绪状态产生影响。瘦素由 ob 基因编码,参与能量平衡,在肥胖的发生发展中起作用。瘦素缺失(ob/ob)的小鼠肥胖,并表现出多种行为改变。已经表明,ob/ob 小鼠在边缘系统内的神经元可塑性中表现出显著的变化,例如海马结构。我们专注于 ob/ob 小鼠的改变,这些改变可能与边缘系统的另一部分——杏仁核的加工改变有关。ob/ob 小鼠的食物摄入量高于同龄对照组,这可能会影响这些小鼠的情绪状态。由于杏仁核参与情绪处理,我们分析了 ob/ob 小鼠在电生理和结构水平上是否存在可塑性改变。在杏仁核的基底外侧核和外侧核(LA)中,树突棘密度没有变化。有趣的是,与海马体(Porter 等人,2013)相反,ob/ob 小鼠的 LA 长时程增强增加。我们的结果表明,杏仁核和海马体的突触可塑性是由瘦素缺乏以不同的方式调节的,这与这些边缘结构在应激和焦虑中的不同功能有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5ccb/7584530/3716e5edabda/441_2020_3266_Fig1_HTML.jpg

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