Gut microbiota interactions with the immunomodulatory role of vitamin D in normal individuals

Metabolism(2017)

引用 120|浏览12
暂无评分
摘要
Abstract Background Due to immunomodulatory properties, vitamin D status has been implicated in several diseases beyond the skeletal disorders. There is evidence that its deficiency deteriorates the gut barrier favoring translocation of endotoxins into the circulation and systemic inflammation. Few studies investigated whether the relationship between vitamin D status and metabolic disorders would be mediated by the gut microbiota composition. Objective We examined the association between vitamin D intake and circulating levels of 25(OH)D with gut microbiota composition, inflammatory markers and biochemical profile in healthy individuals. Methods In this cross-sectional analysis, 150 young healthy adults were stratified into tertiles of intake and concentrations of vitamin D and their clinical and inflammatory profiles were compared. The DESeq2 was used for comparisons of microbiota composition and the log2 fold changes (log2FC) represented the comparison against the reference level. The association between 25(OH)D and fecal microbiota (16S rRNA sequencing, V4 region) was tested by multiple linear regression. Results Vitamin D intake was associated with its concentration ( r  = 0.220, p  = 0.008). There were no significant differences in clinical and inflammatory variables across tertiles of intake. However, lipopolysaccharides increased with the reduction of 25(OH)D ( p -trend Prevotella was more abundant (log2FC 1.67, p Haemophilus and Veillonella were less abundant (log2FC − 2.92 and − 1.46, p r  = − 0.170, p  = 0.039), E-selectin ( r  = − 0.220, p  = 0.007) and abundances of Coprococcus ( r  = − 0.215, p  = 0.008) and Bifdobacterium ( r  = − 0.269, p  = 0.001) were inversely correlated with 25(OH)D. After adjusting for age, sex, season and BMI, 25(OH)D maintained inversely associated with Coprococcus ( β  = − 9.414, p  = 0.045) and Bifdobacterium ( β  = − 1.881, p  = 0.051), but significance disappeared following the addition of inflammatory markers in the regression models. Conclusion The role of vitamin D in the maintenance of immune homeostasis seems to occur in part by interacting with the gut microbiota. The attenuation of association of bacterial genera by inflammatory markers suggests that inflammation participate in part in the relationship between the gut microbiota and vitamin D concentration. Studies with appropriate design are necessary to address hypothesis raised in the current study.
更多
查看译文
关键词
Vitamin D,Gut microbiota,Gram-negative bacteria,Inflammation
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要