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Circulating microRNAs are associated with early childhood obesity: results of the I.Family Study

机译:循环的microRNA与早期儿童肥胖有关:I.Camily研究的结果

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摘要

Abstract Background Nearly 10 years ago, the World Health Organization reported the increasing prevalence of overweight and obesity worldwide as a challenge for public health due to the associated adverse consequences. Epidemiological studies established a firm relationship between an elevated body mass index and chronic conditions such as diabetes, dyslipidemia, hypertension, heart disease, non-alcoholic fatty liver disease, and some types of cancer. Omic studies demonstrated that microRNA (miRNA) profile changes in tissues correlate with a number of diseases, including obesity. Recent studies showed a remarkable stability of miRNAs also in blood, emphasizing their potential as theranostic agents for a variety of disorders and conditions. A number of miRNAs enriched in homeostasis of obesity and metabolic disorders have been characterized in previous researches. Aim This work was finalized to investigate the differential circulating miRNAs signature in early childhood obesity. Our cross-sectional study analyzed the signature of circulating miRNAs in plasma samples of normal weight (n = 159) and overweight/obese (n = 149) children and adolescents participating to the I.Family study, an EC-funded study finalized to investigate the etiology of overweight, obesity and related disorders and the determinants of food choice, lifestyle, and related health outcomes in children and adolescents of eight European countries (www.ifamilystudy.eu). Results Differences in miRNA signature with respect to anthropometric and biochemical variables were analyzed. A high degree of variability in levels of circulating miRNAs was identified among children from different countries, in line with recent reports supporting the hypothesis that these molecules are likewise affected by environmental and lifestyle factors. A panel of miRNAs differentially expressed in overweight/low-grade obesity children was characterized (miR-551a and miR-501-5p resulted upregulated; miR-10b-5p, miR-191-3p, miR-215-5p, and miR-874-3p resulted downregulated). ROC curves were also constructed for experimentally confirmed miRNAs. Single miRNAs generally exhibited low AUC values with the highest values for miR-874-3p and miR-501-5p which in combination provided an interesting value (AUC = 0.782). Pearson’s analysis confirmed that miR-10b-5p, miR-215-5p, miR-501-5p, miR-551a, and miR-874-3p significantly correlated with BMI z-score. Molecular interactions of obesity-associated miRNAs were also predicted by bioinformatics tools. Conclusions Our work showed that several circulating miRNAs are differentially represented in overweight/low-grade obesity children and adolescents. Although causal pathways cannot be firmly inferred, it is conceivable that circulating miRNAs may be new biomarkers of early childhood obesity. Trial registration ISRCTN, ISRCTN62310987. Registered 23/02/2018 - Retrospectively registered.
机译:摘要背景近10年前,世界卫生组织报告了全世界超重和肥胖越来越普遍,因为由于相关的不良后果,对公共卫生的挑战。流行病学研究建立了腹部肿块指数和糖尿病,血脂血症,高血压,心脏病,非酒精脂肪肝病和某些类型的癌症等慢性疾病之间建立了坚实的关系。 OMIC研究表明,组织中的微小RNA(miRNA)轮廓变化与许多疾病相关,包括肥胖。最近的研究表明,麦芽糖的稳定性也显着稳定,强调其作为各种疾病和病症的治疗剂的潜力。在以前的研究中,许多富集在肥胖症和代谢障碍的稳态中的许多miRNA已经表现出来。目的这项工作是最终确定的,以调查幼儿肥胖症中的差分循环miRNA签名。我们的横截面研究分析了正常重量(n = 159)和超重/肥胖(n = 149)儿童和青少年的血浆样本中循环miRNA的签名,参与I.CAMILY研究,EC资助的研究最终确定了调查八个欧洲国家儿童和青少年食品选择,生活方式和相关健康成果的超重,肥胖和相关疾病和决定因素(www.ifamilystudy.eu)。结果分析了对人体测量和生化变量的miRNA签名差异的分析。来自不同国家的儿童的循环miRNA水平的高度变异性,符合最近的报告,支持这些分子同样受环境和生活方式因素影响的假设。特征在于超重/低级肥胖儿童差异表达的miRNA小组(miR-551a和mir-501-5p所带来的上调; mir-10b-5p,mir-191-3p,mir-215-5p和mir- 874-3p导致下调)。 ROC曲线也用于实验证实的miRNA。单个miRNA通常表现出低AUC值,具有MIR-874-3P和MIR-501-5P的最高值,其组合提供了一个有趣的值(AUC = 0.782)。 Pearson的分析证实,MIR-10B-5P,MIR-215-5P,MIR-501-5P,MIR-551A和MIR-874-3P与BMI Z分数明显相关。肥胖相关的miRNA的分子相互作用也通过生物信息学工具预测。结论我们的工作表明,几个循环的miRNA在超重/低级肥胖儿童和青少年中差异化。虽然不能牢固推断因果途径,但可以想到循环miRNA可能是早期儿童肥胖的新生物标志物。试验登记ISRCTN,ISRCTN62310987。注册了23/02/2018 - 回顾性注册。

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