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生长抑素及含生长抑素神经元在塑造神经元活动和可塑性方面的作用

Somatostatin and Somatostatin-Containing Neurons in Shaping Neuronal Activity and Plasticity.

作者信息

Liguz-Lecznar Monika, Urban-Ciecko Joanna, Kossut Malgorzata

机构信息

Department of Molecular and Cellular Neurobiology, Nencki Institute of Experimental Biology Warsaw, Poland.

Department of Molecular and Cellular Neurobiology, Nencki Institute of Experimental BiologyWarsaw, Poland; Department of Biological Sciences and Center for the Neural Basis of Cognition, Carnegie Mellon UniversityPittsburgh, PA, USA.

出版信息

Front Neural Circuits. 2016 Jun 30;10:48. doi: 10.3389/fncir.2016.00048. eCollection 2016.

Abstract

Since its discovery over four decades ago, somatostatin (SOM) receives growing scientific and clinical interest. Being localized in the nervous system in a subset of interneurons somatostatin acts as a neurotransmitter or neuromodulator and its role in the fine-tuning of neuronal activity and involvement in synaptic plasticity and memory formation are widely recognized in the recent literature. Combining transgenic animals with electrophysiological, anatomical and molecular methods allowed to characterize several subpopulations of somatostatin-containing interneurons possessing specific anatomical and physiological features engaged in controlling the output of cortical excitatory neurons. Special characteristic and connectivity of somatostatin-containing neurons set them up as significant players in shaping activity and plasticity of the nervous system. However, somatostatin is not just a marker of particular interneuronal subpopulation. Somatostatin itself acts pre- and postsynaptically, modulating excitability and neuronal responses. In the present review, we combine the knowledge regarding somatostatin and somatostatin-containing interneurons, trying to incorporate it into the current view concerning the role of the somatostatinergic system in cortical plasticity.

摘要

自40多年前被发现以来,生长抑素(SOM)受到了越来越多的科学和临床关注。生长抑素定位于神经系统的一部分中间神经元中,作为一种神经递质或神经调质发挥作用,其在神经元活动微调中的作用以及在突触可塑性和记忆形成中的参与在最近的文献中得到了广泛认可。将转基因动物与电生理、解剖学和分子方法相结合,能够对几个含有生长抑素的中间神经元亚群进行表征,这些亚群具有特定的解剖学和生理学特征,参与控制皮质兴奋性神经元的输出。含有生长抑素的神经元的特殊特征和连接性使其成为塑造神经系统活动和可塑性的重要参与者。然而,生长抑素不仅仅是特定中间神经元亚群的标志物。生长抑素本身在突触前和突触后都发挥作用,调节兴奋性和神经元反应。在本综述中,我们结合了关于生长抑素和含有生长抑素的中间神经元的知识,试图将其纳入当前关于生长抑素能系统在皮质可塑性中作用的观点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3771/4927943/9c90aae77b69/fncir-10-00048-g0001.jpg

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