Tang Jinling, Ruan Pinglang, Wei Zhu
Department of Dermatology, The Hunan Children's Hospital, Changsha, Hunan Province, China.
The Second Xiangya Hospital, Central South University, Changsha, Hunan Province, China.
Appl Biochem Biotechnol. 2025 May 2. doi: 10.1007/s12010-025-05249-6.
Systemic sclerosis (SSc) is a systemic autoimmune disease characterized by increased morbidity and mortality. The intestinal microbiome and serum metabolites had been implicated in SSc, but the connection between the gut microbiome and serum metabolites remains poorly understood. In this study, we aimed to investigate the relationship between the gut microbiome and serum metabolome in SSc patients. Untargeted metabolomics was employed to examine the metabolic profiles of SSc patients. The results revealed significant alterations in metabolic pathways, particularly beta-alanine metabolism and pyrimidine metabolism in SSc patients. Specifically, reductions in spermine and beta-alanine were observed within beta-alanine metabolism, while uridylic acid decreased in pyrimidine metabolism. Furthermore, fecal microbiome analysis showed an increased relative abundance of Firmicutes, Verrucomicrobia, and Proteobacteria in SSc patients, whereas the abundance of Bacteroidetes and Actinobacteria was reduced at the phylum level. KEGG pathway analysis, combined with transcriptomic analysis of peripheral blood from SSc patients, identified upregulation of Toll-like receptor signaling, TNF signaling, lipid and atherosclerosis pathways, IL-17 signaling, and AMPK signaling. In summary, we performed a comprehensive analysis of the metabolic profile, which may provide insights for understanding the mechanisms of SSc.
系统性硬化症(SSc)是一种以发病率和死亡率增加为特征的全身性自身免疫性疾病。肠道微生物群和血清代谢产物与SSc有关,但肠道微生物群与血清代谢产物之间的联系仍知之甚少。在本研究中,我们旨在调查SSc患者肠道微生物群与血清代谢组之间的关系。采用非靶向代谢组学来检查SSc患者的代谢谱。结果显示,SSc患者的代谢途径有显著改变,特别是β-丙氨酸代谢和嘧啶代谢。具体而言,在β-丙氨酸代谢中观察到精胺和β-丙氨酸减少,而在嘧啶代谢中尿苷酸减少。此外,粪便微生物群分析显示,SSc患者中厚壁菌门、疣微菌门和变形菌门的相对丰度增加,而拟杆菌门和放线菌门在门水平上的丰度降低。KEGG通路分析结合SSc患者外周血的转录组分析,确定了Toll样受体信号传导、TNF信号传导、脂质和动脉粥样硬化通路、IL-17信号传导和AMPK信号传导的上调。总之,我们对代谢谱进行了全面分析,这可能为理解SSc的发病机制提供见解。