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遗传背景对海马突触可塑性的影响:近交系和远交系小鼠之间频率依赖性的变化。

Genetic Background Influence on Hippocampal Synaptic Plasticity: Frequency-Dependent Variations between an Inbred and an Outbred Mice Strain.

机构信息

Department of Health, UNICAEN, INSERM, COMETE, CYCERON, Normandie University, 14000 Caen, France.

PORSOLT, 53940 Le Genest Saint-Isle, France.

出版信息

Int J Mol Sci. 2023 Feb 21;24(5):4304. doi: 10.3390/ijms24054304.

Abstract

For almost half a century, acute hippocampal slice preparations have been widely used to investigate anti-amnesic (or promnesic) properties of drug candidates on long-term potentiation (LTP)-a cellular substrate that supports some forms of learning and memory. The large variety of transgenic mice models now available makes the choice of the genetic background when designing experiments crucially important. Furthermore, different behavioral phenotypes were reported between inbred and outbred strains. Notably, some differences in memory performance were emphasized. Despite this, investigations, unfortunately, did not explore electrophysiological properties. In this study, two stimulation paradigms were used to compare LTP in the hippocampal CA1 area of both inbred (C57BL/6) and outbred (NMRI) mice. High-frequency stimulation (HFS) revealed no strain difference, whereas theta-burst stimulation (TBS) resulted in significantly reduced LTP magnitude in NMRI mice. Additionally, we demonstrated that this reduced LTP magnitude (exhibited by NMRI mice) was due to lower responsiveness to theta-frequency during conditioning stimuli. In this paper, we discuss the anatomo-functional correlates that may explain such hippocampal synaptic plasticity divergence, although straightforward evidence is still lacking. Overall, our results support the prime importance of considering the animal model related to the intended electrophysiological experiments and the scientific issues to be addressed.

摘要

近半个世纪以来,急性海马脑片制备已被广泛用于研究候选药物对长时程增强(LTP)的抗健忘(或促智)特性,LTP 是支持某些形式的学习和记忆的细胞基础。现在有大量的转基因小鼠模型可供选择,因此在设计实验时选择遗传背景至关重要。此外,不同的近交系和远交系之间报告了不同的行为表型。值得注意的是,一些记忆表现的差异被强调了。尽管如此,研究不幸的是没有探索电生理特性。在这项研究中,使用了两种刺激范式来比较近交系(C57BL/6)和远交系(NMRI)小鼠海马 CA1 区的 LTP。高频刺激(HFS)没有显示出品系差异,而 theta 爆发刺激(TBS)导致 NMRI 小鼠的 LTP 幅度显著降低。此外,我们证明了这种 LTP 幅度的降低(NMRI 小鼠表现出)是由于在条件刺激期间对 theta 频率的反应性较低。在本文中,我们讨论了可能解释这种海马突触可塑性差异的解剖功能相关性,尽管仍然缺乏直接证据。总的来说,我们的结果支持了考虑与预期电生理实验相关的动物模型以及要解决的科学问题的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/921b/10001449/1820bbc556db/ijms-24-04304-g001a.jpg

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