Yan Zhenzhen, Zheng Zhilin, Cao Lanxiao, Zhu Zeyu, Zhou Chen, Sun Qiying, Tang Beisha, Zhao Guohua
Department of Neurology, The Fourth Affiliated Hospital, Zhejiang University School of Medicine, Yiwu, 322000, Zhejiang, P.R. China.
Department of Neurology, Xiangya Hospital, Central South University, Changsha, 410078, Hunan, P.R. China.
Metab Brain Dis. 2025 Feb 4;40(2):118. doi: 10.1007/s11011-025-01549-2.
The genetic predisposition and environmental factors both trigger the complex neurological dyskinesia of essential tremor (ET). Gut dysbiosis may facilitate the occurrence and development of neurological diseases. Therefore, it is worth exploring the inner connections between gut microbiota and ET. First, the gut microbiota of 19 ET patients and 21 healthy controls (HCs) were analysed with metagenomics approach. Second, the potential linkages between gut microbiome and serum metabolome profiles were explored by integrative analysis. The gut microbiota disorders were present in ET patients. The LEfSe method showed a significant decrease in Bacteroides. The functional analysis revealed that there were differences in gut microbial apoptosis, retinol metabolism, and steroid hormone biosynthesis pathways. The levels of various lipids and lipid-like molecules alter in serum of ET patients, which correlated with altered gut microbial abundance, indicating the alterations in lipid metabolism involved in apoptosis pathway in ET. All of these data point to the gut dysbiosis in ET, and some changed gut microbial species were linked to abnormalities in blood lipid metabolism, which open up new avenues for investigation into the pathophysiology of ET.
遗传易感性和环境因素都会引发特发性震颤(ET)复杂的神经运动障碍。肠道微生物群失调可能会促进神经系统疾病的发生和发展。因此,探索肠道微生物群与ET之间的内在联系是值得的。首先,采用宏基因组学方法分析了19例ET患者和21例健康对照(HC)的肠道微生物群。其次,通过综合分析探索肠道微生物组与血清代谢组谱之间的潜在联系。ET患者存在肠道微生物群紊乱。LEfSe方法显示拟杆菌显著减少。功能分析表明,肠道微生物凋亡、视黄醇代谢和类固醇激素生物合成途径存在差异。ET患者血清中各种脂质和类脂分子水平发生改变,这与肠道微生物丰度的改变相关,表明ET中参与凋亡途径的脂质代谢发生了改变。所有这些数据都指向ET中的肠道微生物群失调,一些肠道微生物种类的变化与血脂代谢异常有关,这为研究ET的病理生理学开辟了新途径。