Neuromodulation Laboratory, School of Biomedical Sciences, Li Ka Shing Faculty of Medicine, The University of Hong Kong, 21 Sassoon Road, Pokfulam, Hong Kong Special Administrative Region, China.
Department of Anatomy, Faculty of Medicine, University of Malaya, 50603, Kuala Lumpur, Malaysia.
Sci Rep. 2020 Sep 10;10(1):14945. doi: 10.1038/s41598-020-71966-z.
Cerebellar ataxia is a neurodegenerative disorder with no definitive treatment. Although several studies have demonstrated the neuroprotective effects of Hericium erinaceus (H.E.), its mechanisms in cerebellar ataxia remain largely unknown. Here, we investigated the neuroprotective effects of H.E. treatment in an animal model of 3-acetylpyridine (3-AP)-induced cerebellar ataxia. Animals administered 3-AP injection exhibited remarkable impairments in motor coordination and balance. There were no significant effects of 25 mg/kg H.E. on the 3-AP treatment group compared to the 3-AP saline group. Interestingly, there was also no significant difference in the 3-AP treatment group compared to the non-3-AP control, indicating a potential rescue of motor deficits. Our results revealed that 25 mg/kg H.E. normalised the neuroplasticity-related gene expression to the level of non-3-AP control. These findings were further supported by increased protein expressions of pERK1/2-pCREB-PSD95 as well as neuroprotective effects on cerebellar Purkinje cells in the 3-AP treatment group compared to the 3-AP saline group. In conclusion, our findings suggest that H.E. potentially rescued behavioural motor deficits through the neuroprotective mechanisms of ERK-CREB-PSD95 in an animal model of 3-AP-induced cerebellar ataxia.
小脑共济失调是一种神经退行性疾病,目前尚无明确的治疗方法。虽然已有多项研究表明,珊瑚菌(H.E.)具有神经保护作用,但它在小脑共济失调中的作用机制尚不清楚。本研究旨在探讨珊瑚菌(H.E.)治疗 3-乙酰吡啶(3-AP)诱导的小脑共济失调动物模型的神经保护作用。结果显示,3-AP 注射组动物的运动协调和平衡能力显著受损。与 3-AP 生理盐水组相比,25mg/kg H.E. 对 3-AP 治疗组没有显著影响。有趣的是,与非 3-AP 对照组相比,3-AP 治疗组也没有显著差异,这表明 3-AP 治疗组的运动缺陷可能得到了挽救。研究结果表明,25mg/kg H.E. 将神经可塑性相关基因的表达水平恢复到非 3-AP 对照组的水平。这一发现得到了进一步的支持,即与 3-AP 生理盐水组相比,3-AP 治疗组中 pERK1/2-pCREB-PSD95 的蛋白表达增加,以及对小脑浦肯野细胞的神经保护作用。综上所述,本研究结果表明,珊瑚菌可能通过 ERK-CREB-PSD95 神经保护机制,在 3-AP 诱导的小脑共济失调动物模型中挽救行为运动缺陷。