Cannabinoid Modulation of Excitability and Short-Term Neuronal Dynamics in the Dorsal and Ventral Hippocampus.

IF 3.6 3区 生物学 Q1 BIOLOGY
Giota Tsotsokou, Ioanna-Maria Sotiropoulou, Klearchos Stampolitis, George D Oikonomou, Aikaterini-Paraskevi Avdi, Costas Papatheodoropoulos
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引用次数: 0

Abstract

Endocannabinoids, acting primarily through CB1 receptors, are critical modulators of neuronal activity, influencing cognitive functions and emotional processing. CB1 receptors are highly expressed in the hippocampus, primarily on GABAergic interneurons, modulating the excitation/inhibition balance. Previous evidence suggests the functional heterogeneity of CB1 receptors along the dorsoventral axis of the hippocampus. However, it is not known whether CB1 receptors differentially modulate basic aspects of the local neuronal network along the hippocampus. This study investigated how CB1 receptor activation modulates excitability, paired-pulse inhibition (PPI), and short-term neuronal dynamics (STND) in the dorsal and ventral CA1 hippocampus under physiologically relevant conditions. Using extracellular recordings from hippocampal slices of male Wistar rats, we compared the effects of two CB1 receptor agonists, ACEA and WIN55,212-2, on network activity in the dorsal and ventral hippocampus. We found that both agonists significantly increased excitability and reduced PPI in the dorsal, but not the ventral, hippocampus. Similarly, CB1 receptor activation modulated STND more prominently in the dorsal hippocampus, reducing facilitation at low frequencies and reversing depression at high frequencies, whereas effects on the ventral region were minimal. These dorsoventral differences in the actions of cannabinoid receptor agonists occurred despite similar CB1 receptor expression levels in both regions, suggesting that functional differences arise from downstream mechanisms rather than receptor density. Pre-application of the GIRK channel blocker Tertiapin-Q occluded the effects of WIN55,212-2 on STND, indicating a significant role of GIRK channel-mediated signaling in CB1 receptor actions. These findings demonstrate that CB1 receptors modulate hippocampal circuitry in a region-specific manner, with the dorsal hippocampus being more sensitive to cannabinoid signaling, likely through differential engagement of intracellular signaling pathways such as GIRK channel activation. These results provide novel insights into how endocannabinoid signaling differentially regulates neuronal dynamics along the dorsoventral axis of the hippocampus. They also have important implications for understanding the role of cannabinoids in hippocampus-dependent behaviors.

大麻素对海马背侧和腹侧兴奋性和短期神经元动力学的调节。
内源性大麻素主要通过CB1受体起作用,是神经元活动的重要调节剂,影响认知功能和情绪处理。CB1受体在海马中高度表达,主要在gaba能中间神经元上,调节兴奋/抑制平衡。先前的证据表明,CB1受体沿海马背腹侧轴的功能异质性。然而,目前尚不清楚CB1受体是否对海马区局部神经元网络的基本方面有差异调节。本研究探讨了CB1受体激活在生理相关条件下如何调节CA1海马背侧和腹侧的兴奋性、配对脉冲抑制(PPI)和短期神经元动力学(STND)。利用雄性Wistar大鼠海马片的细胞外记录,我们比较了两种CB1受体激动剂ACEA和WIN55,212-2对海马背侧和腹侧网络活动的影响。我们发现,这两种激动剂显著增加了海马背侧的兴奋性,降低了PPI,而不是腹侧的。同样,CB1受体激活在海马背侧更显著地调节STND,在低频时降低促进性,在高频时逆转抑郁,而对腹侧区域的影响最小。尽管两个区域的CB1受体表达水平相似,但大麻素受体激动剂作用的背腹侧差异仍然存在,这表明功能差异源于下游机制而非受体密度。预应用GIRK通道阻断剂terapin - q阻断了WIN55,212-2对STND的作用,表明GIRK通道介导的信号传导在CB1受体的作用中起着重要作用。这些发现表明,CB1受体以特定区域的方式调节海马回路,海马背侧对大麻素信号更敏感,可能是通过细胞内信号通路的不同参与,如GIRK通道激活。这些结果为内源性大麻素信号如何沿着海马背腹侧轴不同地调节神经元动力学提供了新的见解。它们对于理解大麻素在海马体依赖行为中的作用也具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Biology-Basel
Biology-Basel Biological Science-Biological Science
CiteScore
5.70
自引率
4.80%
发文量
1618
审稿时长
11 weeks
期刊介绍: Biology (ISSN 2079-7737) is an international, peer-reviewed, quick-refereeing open access journal of Biological Science published by MDPI online. It publishes reviews, research papers and communications in all areas of biology and at the interface of related disciplines. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. There is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced. Electronic files regarding the full details of the experimental procedure, if unable to be published in a normal way, can be deposited as supplementary material.
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