Oral-gut microbial transmission promotes diabetic coronary heart disease

核梭杆菌 蔷薇花 肠道菌群 医学 梭杆菌 糖尿病 微生物学 钙蛋白酶 乳酸菌 冠状动脉疾病 内科学 生物 疾病 免疫学 炎症性肠病 内分泌学 牙周炎 拟杆菌 细菌 牙龈卟啉单胞菌 遗传学
作者
Yiwen Li,Yanfei Liu,Jing Cui,Mengmeng Zhu,Wenting Wang,Keji Chen,Luqi Huang,Yue Liu
出处
期刊:Cardiovascular Diabetology [Springer Nature]
卷期号:23 (1) 被引量:6
标识
DOI:10.1186/s12933-024-02217-y
摘要

Abstract Background Diabetes is a predominant driver of coronary artery disease worldwide. This study aims to unravel the distinct characteristics of oral and gut microbiota in diabetic coronary heart disease (DCHD). Simultaneously, we aim to establish a causal link between the diabetes-driven oral-gut microbiota axis and increased susceptibility to diabetic myocardial ischemia–reperfusion injury (MIRI). Methods We comprehensively investigated the microbial landscape in the oral and gut microbiota in DCHD using a discovery cohort (n = 183) and a validation chohort (n = 68). Systematically obtained oral (tongue-coating) and fecal specimens were subjected to metagenomic sequencing and qPCR analysis, respectively, to holistically characterize the microbial consortia. Next, we induced diabetic MIRI by administering streptozotocin to C57BL/6 mice and subsequently investigated the potential mechanisms of the oral-gut microbiota axis through antibiotic pre-treatment followed by gavage with specific bacterial strains ( Fusobacterium nucleatum or fecal microbiota from DCHD patients) to C57BL/6 mice. Results Specific microbial signatures such as oral Fusobacterium nucleatum and gut Lactobacillus, Eubacterium, and Roseburia faecis , were identified as potential microbial biomarkers in DCHD. We further validated that oral Fusobacterium nucleatum and gut Lactobacillus are increased in DCHD patients, with a positive correlation between the two. Experimental evidence revealed that in hyperglycemic mice, augmented Fusobacterium nucleatum levels in the oral cavity were accompanied by an imbalance in the oral-gut axis, characterized by an increased coexistence of Fusobacterium nucleatum and Lactobacillus , along with elevated cardiac miRNA-21 and a greater extent of myocardial damage indicated by TTC, HE, TUNEL staining, all of which contributed to exacerbated MIRI. Conclusion Our findings not only uncover dysregulation of the oral-gut microbiota axis in diabetes patients but also highlight the pivotal intermediary role of the increased abundance of oral F. nucleatum and gut Lactobacillus in exacerbating MIRI. Targeting the oral-gut microbiota axis emerges as a potent strategy for preventing and treating DCHD. Oral-gut microbial transmission constitutes an intermediate mechanism by which diabetes influences myocardial injury, offering new insights into preventing acute events in diabetic patients with coronary heart disease. Graphic Abstract
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