Integrative metagenomic and lipidomic analyses reveal alterations in children with obesity and after lifestyle intervention

IF 4 2区 农林科学 Q2 NUTRITION & DIETETICS Frontiers in Nutrition Pub Date : 2024-09-10 DOI:10.3389/fnut.2024.1423724
Chunyan Yin, Lujie Liu, Dong Xu, Meng Li, Min Li, Yujie Qin, Bei Zhang, Yongfa Sun, Yuesheng Liu, Yanfeng Xiao
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Abstract

BackgroundDespite emerging evidence linking alterations in gut microbiota to childhood obesity, the metabolic mechanisms linking gut microbiota to the lipid profile during childhood obesity and weight loss remain poorly understood.MethodologyIn this study, children with obesity were treated with lifestyle weight loss therapy. Metagenomics association studies and serum untargeted lipidomics analyses were performed in children with obesity and healthy controls before and after weight loss.Main findingsWe identified alterations in gut microbiota associated with childhood obesity, as well as variations in circulating metabolite concentrations. Children with obesity showed significant decreases in the levels of s-Rothia_kristinae and s-Enterobacter_roggenkampii, alongsige elevated levels of s-Clostridiales_bacterium_Marseille-P5551. Following weight loss, the levels of s-Streptococcus_infantarius and s-Leuconostoc_citreum increased by factors of 3.354 and 1.505, respectively, in comparison to their pre-weight loss levels. Correlation analyses indicated a significant positive relationship between ChE(2:0) levels and both with s-Lachnospiraceae_bacterium_TF09-5 and fasting glucose levels. CoQ8 levels were significantly negatively correlated with s-Rothia_kristinae and HOMA-IR.ConclusionWe linked altered gut microbiota and serum lipid levels in children with obesity to clinical indicators, indicating a potential impact on glucose metabolism via lipids. This study contributes to understanding the mechanistic relationship between altered gut microbiota and childhood obesity and weight loss, suggesting gut microbiome as a promising target for intervention.Clinical trial registrationhttps://www.chictr.org.cn/showproj.html?proj=178971, ChiCTR2300072179.
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元基因组和脂质组综合分析揭示了肥胖儿童和生活方式干预后的变化
背景尽管有新的证据表明肠道微生物群的改变与儿童肥胖有关,但人们对儿童肥胖和减肥期间肠道微生物群与血脂谱之间的代谢机制仍然知之甚少。在减肥前后,对肥胖症儿童和健康对照组进行了元基因组学关联研究和血清非靶向脂质组学分析。肥胖儿童的 s-Rothia_kristinae 和 s-Enterobacter_roggenkampii 水平明显下降,s-Clostridiales_bacterium_Marseille-P5551 水平升高。失重后,s-Streptococcus_infantarius 和 s-Leuconostoc_citreum 的含量与失重前相比分别增加了 3.354 倍和 1.505 倍。相关分析表明,ChE(2:0)水平与s-Lachnospiraceae_bacterium_TF09-5和空腹血糖水平之间存在显著的正相关关系。结论我们将肥胖症儿童肠道微生物群和血清脂质水平的改变与临床指标联系起来,表明了通过脂质对葡萄糖代谢的潜在影响。这项研究有助于理解肠道微生物群改变与儿童肥胖和体重减轻之间的机理关系,提示肠道微生物群是一个有前景的干预目标。临床试验注册https://www.chictr.org.cn/showproj.html?proj=178971,ChiCTR2300072179。
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来源期刊
Frontiers in Nutrition
Frontiers in Nutrition Agricultural and Biological Sciences-Food Science
CiteScore
5.20
自引率
8.00%
发文量
2891
审稿时长
12 weeks
期刊介绍: No subject pertains more to human life than nutrition. The aim of Frontiers in Nutrition is to integrate major scientific disciplines in this vast field in order to address the most relevant and pertinent questions and developments. Our ambition is to create an integrated podium based on original research, clinical trials, and contemporary reviews to build a reputable knowledge forum in the domains of human health, dietary behaviors, agronomy & 21st century food science. Through the recognized open-access Frontiers platform we welcome manuscripts to our dedicated sections relating to different areas in the field of nutrition with a focus on human health. Specialty sections in Frontiers in Nutrition include, for example, Clinical Nutrition, Nutrition & Sustainable Diets, Nutrition and Food Science Technology, Nutrition Methodology, Sport & Exercise Nutrition, Food Chemistry, and Nutritional Immunology. Based on the publication of rigorous scientific research, we thrive to achieve a visible impact on the global nutrition agenda addressing the grand challenges of our time, including obesity, malnutrition, hunger, food waste, sustainability and consumer health.
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