Valeri Andrea, Chiricosta Luigi, Gugliandolo Agnese, Pollastro Federica, Mazzon Emanuela
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.
Pharmaceuticals (Basel). 2022 Jan 19;15(2):117. doi: 10.3390/ph15020117.
Spinal cord injury affects the lives of millions of people around the world, often causing disability and, in unfortunate circumstances, death. Rehabilitation can partly improve outcomes and only a small percentage of patients, typically the least injured, can hope to return to normal living conditions. is gaining more and more interest in recent years, even though its beneficial properties have been known for thousands of years. Cannabigerol (CBG), extracted from , is defined as the "mother of all cannabinoids" and its properties range from anti-inflammatory to antioxidant and neuroprotection. Using NSC-34 cells to model spinal cord injury in vitro, our work evaluated the properties of CBG treatments in motor neuron regeneration. While pre-treatment can modulate oxidative stress and increase antioxidant enzyme genes, such as , decreasing post-treatment seems to induce regeneration genes by triggering different pathways, such as via p53 acetylation by and and via signaling, along with cytoskeletal remodeling signaling genes and . Our results indicate CBG as a phytocompound worth further investigation in the field of neuronal regeneration.
脊髓损伤影响着全球数百万人的生活,常常导致残疾,在不幸的情况下还会导致死亡。康复可以部分改善预后,只有一小部分患者,通常是损伤最轻的患者,有望恢复到正常生活状态。尽管其有益特性已为人所知数千年,但近年来它越来越受到关注。从大麻中提取的大麻二酚(CBG)被定义为“所有大麻素之母”,其特性从抗炎到抗氧化和神经保护不等。我们利用NSC-34细胞在体外模拟脊髓损伤,评估了CBG治疗在运动神经元再生方面的特性。虽然预处理可以调节氧化应激并增加抗氧化酶基因,如 ,但治疗后降低 似乎通过触发不同途径诱导再生基因,如 通过 和 使p53乙酰化以及 通过 信号传导,同时还有细胞骨架重塑信号基因 和 。我们的结果表明,CBG作为一种植物化合物,在神经元再生领域值得进一步研究。