Yan Zhenzhen, Li Ruihua, Shi Wanying, Yao Lifen
First Affiliated Hospital of Harbin Medical University, Harbin, 150080, Heilongjiang Province, China.
Metab Brain Dis. 2022 Oct;37(7):2511-2520. doi: 10.1007/s11011-022-01004-6. Epub 2022 Jul 27.
Gastrointestinal symptoms are common in the early-stage Parkinson's disease (PD), but its potential pathogenesis remains unclear. Therefore, in the present study, we used the 16S ribosomal RNA gene sequencing and gas chromatography coupled with mass spectrometry-based metabolomics to investigate the alterations of gut microbiome and serum amino acid levels in the early-stage PD mice model induced with rotenone. The results demonstrated that the microbial taxa at phylum, family and genus levels remarkably altered in rotenone-induced mice relative to vehicle-induced mice. The rotenone-induced mice had higher relative abundance of Flavobacteriaceae, Staphylococcaceae, and Prevotellaceae as well as lower relative abundance of Lachnospiraceae_UCG-001, Ruminiclostridium, and Prevotellaceae_NK3B31_group than vehicle-induced mice. The evaluation of serum amino acids revealed the alterations in several classes of amino acids, including L-proline, L-alanine, L-serine, L-asparagine, L-threonine, L-glutamine, L-methionine, and L-4-hydroxyproline. Notably, the altered serum amino acid levels were significantly associated with the abundance of gut microbiota, especially Ruminococcaceae and Ruminiclostridium. Our study explored the possible role of the gut-microbiota-metabolite axis in the early-stage PD and provided the possibility of prevention and treatment of PD by gut-microbiota-metabolite axis in the future.
胃肠道症状在帕金森病(PD)早期很常见,但其潜在发病机制仍不清楚。因此,在本研究中,我们使用16S核糖体RNA基因测序和气相色谱-质谱联用代谢组学方法,研究了鱼藤酮诱导的早期PD小鼠模型中肠道微生物群和血清氨基酸水平的变化。结果表明,与溶剂诱导的小鼠相比,鱼藤酮诱导的小鼠在门、科和属水平上的微生物类群有显著改变。鱼藤酮诱导的小鼠中黄杆菌科、葡萄球菌科和普雷沃氏菌科的相对丰度较高,而毛螺菌科_UCG-001、瘤胃梭菌属和普雷沃氏菌科_NK3B31组的相对丰度低于溶剂诱导的小鼠。血清氨基酸评估显示几类氨基酸发生了变化,包括L-脯氨酸、L-丙氨酸、L-丝氨酸、L-天冬酰胺、L-苏氨酸、L-谷氨酰胺、L-蛋氨酸和L-4-羟基脯氨酸。值得注意的是,血清氨基酸水平的改变与肠道微生物群的丰度显著相关,尤其是瘤胃球菌科和瘤胃梭菌属。我们的研究探讨了肠道微生物群-代谢物轴在早期PD中的可能作用,并为未来通过肠道微生物群-代谢物轴预防和治疗PD提供了可能性。