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鞘氨醇-1-磷酸受体3亚型的消融损害海马神经元兴奋性和空间工作记忆。

Ablation of Sphingosine 1-Phosphate Receptor Subtype 3 Impairs Hippocampal Neuron Excitability and Spatial Working Memory .

作者信息

Weth-Malsch Daniela, Langeslag Michiel, Beroukas Dimitra, Zangrandi Luca, Kastenberger Iris, Quarta Serena, Malsch Philipp, Kalpachidou Theodora, Schwarzer Christoph, Proia Richard L, Haberberger Rainer V, Kress Michaela

机构信息

Division of Physiology, Department of Physiology and Medical Physics, Medical University of Innsbruck Innsbruck, Austria.

Anatomy and Histology and Centre for Neuroscience, Flinders University Adelaide, SA, Australia.

出版信息

Front Cell Neurosci. 2016 Nov 7;10:258. doi: 10.3389/fncel.2016.00258. eCollection 2016.

Abstract

Understanding the role of the bioactive lipid mediator sphingosine 1-phosphate (S1P) within the central nervous system has recently gained more and more attention, as it has been connected to major diseases such as multiple sclerosis and Alzheimer's disease. Even though much data about the functions of the five S1P receptors has been collected for other organ systems, we still lack a complete understanding for their specific roles, in particular within the brain. Therefore, it was the aim of this study to further elucidate the role of S1P receptor subtype 3 (S1P) and with a special focus on the hippocampus. Using an S1P knock-out mouse model we applied a range of behavioral tests, performed expression studies, and whole cell patch clamp recordings in acute hippocampal slices. We were able to show that S1P deficient mice display a significant spatial working memory deficit within the T-maze test, but not in anxiety related tests. Furthermore, mRNA was expressed throughout the hippocampal formation. Principal neurons in area CA3 lacking S1P showed significantly increased interspike intervals and a significantly decreased input resistance. Upon stimulation with S1P CA3 principal neurons from both wildtype and [Formula: see text] mice displayed significantly increased evoked EPSC amplitudes and decay times, whereas rise times remained unchanged. These results suggest a specific involvement of S1P for the establishment of spatial working memory and neuronal excitability within the hippocampus.

摘要

生物活性脂质介质鞘氨醇-1-磷酸(S1P)在中枢神经系统中的作用近来越来越受到关注,因为它与诸如多发性硬化症和阿尔茨海默病等重大疾病有关。尽管已经收集了许多关于五种S1P受体在其他器官系统中功能的数据,但我们仍缺乏对其具体作用的全面了解,尤其是在大脑中的作用。因此,本研究的目的是进一步阐明S1P受体亚型3(S1PR3)的作用,并特别关注海马体。我们使用S1PR3基因敲除小鼠模型进行了一系列行为测试、表达研究,并在急性海马切片中进行了全细胞膜片钳记录。我们能够证明,S1PR3基因缺陷小鼠在T迷宫测试中表现出显著的空间工作记忆缺陷,但在焦虑相关测试中则没有。此外,S1PR3 mRNA在整个海马结构中均有表达。缺乏S1PR3的CA3区主要神经元的峰间间隔显著增加,输入电阻显著降低。用S1P刺激时,野生型和S1PR3基因敲除小鼠的CA3区主要神经元的诱发兴奋性突触后电流(EPSC)幅度和衰减时间均显著增加,而上升时间保持不变。这些结果表明,S1PR3在海马体空间工作记忆的建立和神经元兴奋性方面具有特定作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3daa/5097928/dd833a8bc2ad/fncel-10-00258-g0001.jpg

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