Fecal microbiota composition is related to brown adipose tissue 18F-fluorodeoxyglucose uptake in young adults

脂肪组织 粪便 褐色脂肪组织 作文(语言) 医学 内科学 内分泌学 病理 生物 生理学 微生物学 语言学 哲学
作者
Lourdes Ortiz-Alvarez,Francisco M. Acosta,Huiwen Xu,Guillermo Sánchez‐Delgado,Ramiro Vilchez‐Vargas,Alexander Link,Julio Plaza‐Díaz,J.M. Llamas,Ángel Gil,Idoia Labayen,Patrick C.N. Rensen,Jonatan R. Ruiz,Borja Martínez‐Téllez
出处
期刊:Journal of Endocrinological Investigation [Springer Science+Business Media]
卷期号:46 (3): 567-576 被引量:7
标识
DOI:10.1007/s40618-022-01936-x
摘要

Human brown adipose tissue (BAT) has gained considerable attention as a potential therapeutic target for obesity and its related cardiometabolic diseases; however, whether the gut microbiota might be an efficient stimulus to activate BAT metabolism remains to be ascertained. We aimed to investigate the association of fecal microbiota composition with BAT volume and activity and mean radiodensity in young adults. 82 young adults (58 women, 21.8 ± 2.2 years old) participated in this cross-sectional study. DNA was extracted from fecal samples and 16S rRNA sequencing was performed to analyse the fecal microbiota composition. BAT was determined via a static 18F-fluorodeoxyglucose (18F-FDG) positron emission tomography-computed tomography scan (PET/CT) after a 2 h personalized cooling protocol. 18F-FDG uptake was also quantified in white adipose tissue (WAT) and skeletal muscles. The relative abundance of Akkermansia, Lachnospiraceae sp. and Ruminococcus genera was negatively correlated with BAT volume, BAT SUVmean and BAT SUVpeak (all rho ≤ - 0.232, P ≤ 0.027), whereas the relative abundance of Bifidobacterium genus was positively correlated with BAT SUVmean and BAT SUVpeak (all rho ≥ 0.262, P ≤ 0.012). On the other hand, the relative abundance of Sutterellaceae and Bifidobacteriaceae families was positively correlated with 18F-FDG uptake by WAT and skeletal muscles (all rho ≥ 0.213, P ≤ 0.042). All the analyses were adjusted for the PET/CT scan date as a proxy of seasonality. Our results suggest that fecal microbiota composition is involved in the regulation of BAT and glucose uptake by other tissues in young adults. Further studies are needed to confirm these findings. ClinicalTrials.gov no. NCT02365129 (registered 18 February 2015).
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