Association of Human Intestinal Microbiota with Lifestyle Activity, Adiposity, and Metabolic Profiles in Thai Children with Obesity

IF 2.3 Q3 NUTRITION & DIETETICS Journal of Nutrition and Metabolism Pub Date : 2022-05-20 DOI:10.1155/2022/3029582
C. Visuthranukul, S. Sriswasdi, Surapun Tepaamorndech, Y. Joyjinda, Puthita Saengpanit, Tanisa Kwanbunbumpen, Ekkarit Panichsillaphakit, Jaraspong Uaariyapanichkul, S. Chomtho
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引用次数: 1

Abstract

Background Dysbiosis of intestinal microbiota may be linked to pathogenesis of obesity and metabolic disorders. Objective This study compared the gut microbiome of obese Thai children with that of healthy controls and examined their relationships with host lifestyle, adiposity, and metabolic profiles. Methods This cross-sectional study enrolled obese children aged 7–15. Body composition was evaluated using bioelectrical impedance analysis. Stool samples were analyzed by 16S rRNA sequencing using the Illumina MiSeq platform. Relative abundance and alpha- and beta-diversity were compared with normal-weight Thai children from a previous publication using Wilcoxon rank-sum test and ANOSIM. Relationships of gut microbiota with lifestyle activity, body composition, and metabolic profiles were assessed by canonical correlation analysis (CCA) and Spearman correlation. Results The study enrolled 164 obese children with a male percentage of 59%. Mean age was 10.4 ± 2.2 years with a BMI z-score of 3.2 ± 1. The abundance of Bacteroidetes and Actinobacteria were found to be lower in obese children compared to nonobese children. Alpha-diversity indices showed no differences between groups, while beta-diversity revealed significant differences in the family and genus levels. CCA revealed significant correlations of the relative abundance of gut microbial phyla with sedentary lifestyle and certain metabolic markers. Univariate analysis revealed that Actinobacteria and Bifidobacterium were positively correlated with HDL-C and negatively correlated with body weight and screen time. Additionally, Actinobacteria was also negatively associated with fasting insulin and HOMA-IR. Lactobacillus showed positive correlation with acanthosis nigricans and adiposity. Cooccurrence analysis revealed 90 significant bacterial copresence and mutual exclusion interactions among 43 genera in obese children, whereas only 2 significant cooccurrences were found in nonobese children. Conclusions The composition and diversity of gut microbiota in obese Thai children were different from those of their normal-weight peers. Specific gut microbiota were associated with lifestyle, adiposity, and metabolic features in obese children. An interventional study is needed to support causality between specific gut microbiota and obesity.
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泰国肥胖儿童肠道微生物群与生活方式活动、肥胖和代谢谱的关系
背景肠道菌群失调可能与肥胖和代谢紊乱的发病机制有关。目的本研究比较了泰国肥胖儿童与健康对照组的肠道微生物组,并研究了它们与宿主生活方式、肥胖和代谢谱的关系。方法本横断面研究纳入7-15岁的肥胖儿童。采用生物电阻抗分析法评价机体成分。使用Illumina MiSeq平台对粪便样本进行16S rRNA测序分析。使用Wilcoxon秩和检验和ANOSIM与先前出版物中正常体重的泰国儿童进行相对丰度和α和β多样性比较。通过典型相关分析(CCA)和Spearman相关评估肠道微生物群与生活方式活动、身体组成和代谢谱的关系。结果本研究共纳入164名肥胖儿童,其中男性占59%。平均年龄10.4±2.2岁,BMI z-score为3.2±1。肥胖儿童的拟杆菌门和放线菌门的丰度比非肥胖儿童低。α -多样性指数在组间无显著差异,而β -多样性指数在科和属水平上存在显著差异。CCA揭示了肠道微生物门的相对丰度与久坐生活方式和某些代谢标志物之间的显著相关性。单因素分析显示,放线菌和双歧杆菌与HDL-C呈正相关,与体重和屏幕时间负相关。此外,放线菌也与空腹胰岛素和HOMA-IR呈负相关。乳酸菌与黑棘皮病和肥胖呈正相关。共发生分析显示,肥胖儿童43个属中存在90个显著的细菌共存在和互斥相互作用,而非肥胖儿童中仅发现2个显著的共发生。结论泰国肥胖儿童肠道菌群的组成和多样性与正常体重儿童不同。特定肠道菌群与肥胖儿童的生活方式、肥胖和代谢特征有关。需要一项介入性研究来支持特定肠道微生物群与肥胖之间的因果关系。
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来源期刊
Journal of Nutrition and Metabolism
Journal of Nutrition and Metabolism NUTRITION & DIETETICS-
CiteScore
5.40
自引率
0.00%
发文量
49
审稿时长
17 weeks
期刊介绍: Journal of Nutrition and Metabolism is a peer-reviewed, Open Access journal that publishes original research articles, review articles, and clinical studies covering the broad and multidisciplinary field of human nutrition and metabolism. The journal welcomes submissions on studies related to obesity, diabetes, metabolic syndrome, molecular and cellular biology of nutrients, foods and dietary supplements, as well as macro- and micronutrients including vitamins and minerals.
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