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大麻酚(CBNR)对NSC - 34细胞系中与细胞骨架和离子通道相关的突触基因的影响:一项转录组学研究。

Cannabinerol (CBNR) Influences Synaptic Genes Associated with Cytoskeleton and Ion Channels in NSC-34 Cell Line: A Transcriptomic Study.

作者信息

Artimagnella Osvaldo, Mazzon Emanuela, Salamone Stefano, Pollastro Federica, Gugliandolo Agnese, Chiricosta Luigi

机构信息

IRCCS Centro Neurolesi "Bonino-Pulejo", Via Provinciale Palermo, Contrada Casazza, 98124 Messina, Italy.

Department of Pharmaceutical Sciences, University of Eastern Piedmont, Largo Donegani 2, 28100 Novara, Italy.

出版信息

Biomedicines. 2024 Jan 15;12(1):189. doi: 10.3390/biomedicines12010189.

Abstract

Cannabinoids are receiving great attention as a novel approach in the treatment of cognitive and motor disabilities, which characterize neurological disorders. To date, over 100 phytocannabinoids have been extracted from , and some of them have shown neuroprotective properties and the capacity to influence synaptic transmission. In this study, we investigated the effects of a less-known phytocannabinoid, cannabinerol (CBNR), on neuronal physiology. Using the NSC-34 motor-neuron-like cell line and next-generation sequencing analysis, we discovered that CBNR influences synaptic genes associated with synapse organization and specialization, including genes related to the cytoskeleton and ion channels. Specifically, the calcium, sodium, and potassium channel subunits (, , , , , , ) were upregulated, along with genes related to NMDAR (, ) and calcium (, ) signaling. Moreover, cytoskeletal and cytoskeleton-associated genes (, , , , , , , ) were also regulated by CBNR. These findings highlight the important role played by CBNR in the regulation of synaptogenesis and synaptic transmission, suggesting the need for further studies to evaluate the neuroprotective role of CBNR in the treatment of synaptic dysfunctions that characterize motor disabilities in many neurological disorders.

摘要

大麻素作为治疗认知和运动障碍的一种新方法正受到广泛关注,这些障碍是神经疾病的特征。迄今为止,已从 中提取出100多种植物大麻素,其中一些已显示出神经保护特性以及影响突触传递的能力。在本研究中,我们研究了一种鲜为人知的植物大麻素大麻萜酚(CBNR)对神经元生理学的影响。使用NSC-34运动神经元样细胞系和新一代测序分析,我们发现CBNR影响与突触组织和特化相关的突触基因,包括与细胞骨架和离子通道相关的基因。具体而言,钙、钠和钾通道亚基( 、 、 、 、 、 )上调,以及与NMDAR( 、 )和钙( 、 )信号相关的基因也上调。此外,细胞骨架和与细胞骨架相关的基因( 、 、 、 、 、 、 、 )也受CBNR调控。这些发现突出了CBNR在突触发生和突触传递调节中所起的重要作用,表明需要进一步研究以评估CBNR在治疗许多神经疾病中运动障碍特征的突触功能障碍方面的神经保护作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/32f9/10813620/3c6a19590f3c/biomedicines-12-00189-g001.jpg

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