Improved physiology and metabolic flux after Roux-en-Y gastric bypass is associated with temporal changes in the circulating microRNAome: a longitudinal study in humans.

Q1 Medicine BMC Obesity Pub Date : 2018-05-31 eCollection Date: 2018-01-01 DOI:10.1186/s40608-018-0199-z
Abdullah Alkandari, Hutan Ashrafian, Thozhukat Sathyapalan, Peter Sedman, Ara Darzi, Elaine Holmes, Thanos Athanasiou, Stephen L Atkin, Nigel J Gooderham
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引用次数: 20

Abstract

Background: The global pandemic of obesity and the metabolic syndrome are leading causes of mortality and morbidity. Bariatric surgery leads to sustained weight loss and improves obesity-associated morbidity including remission of type 2 diabetes. MicroRNAs are small, endogenous RNAs that regulate gene expression post-transcriptionally, controlling most of the human transcriptome and contributing to the regulation of systemic metabolism. This preliminary, longitudinal, repeat sampling study, in which subjects acted as their own control, aimed to assess the temporal effect of bariatric surgery on circulating microRNA expression profiles.

Methods: We used Exiqon's optimized circulating microRNA panel (comprising 179 validated miRNAs) and miRCURY locked nucleic acid plasma/serum Polymerase Chain Reaction (PCR) to assess circulating microRNA expression. The microRNAome was determined for Roux-en-Y gastric bypass (RYGB) patients examined preoperatively and at 1 month, 3 months, 6 months, 9 months and 12 months postoperatively. Data was analysed using multivariate and univariate statistics.

Results: Compared to the preoperative circulating microRNA expression profile, RYGB altered the circulating microRNAome in a time dependent manner and the expression of 48 circulating microRNAs were significantly different. Importantly, these latter microRNAs are associated with pathways involved in regulation and rescue from metabolic dysfunction and correlated with BMI, the percentage of excess weight loss and fasting blood glucose levels.

Conclusions: The results of this pilot study show that RYGB fundamentally alters microRNA expression in circulation with a time-dependent progressive departure in profile from the preoperative baseline and indicate that microRNAs are potentially novel biomarkers for the benefits of bariatric surgery.

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Roux-en-Y胃旁路术后生理和代谢通量的改善与循环microRNAome的时间变化有关:一项对人类的纵向研究
背景:肥胖和代谢综合征的全球流行是导致死亡和发病的主要原因。减肥手术可导致持续的体重减轻,并改善肥胖相关的发病率,包括2型糖尿病的缓解。MicroRNAs是一种小的内源性rna,它在转录后调节基因表达,控制大部分人类转录组,并参与调节全身代谢。这项初步的、纵向的、重复的抽样研究,在这项研究中,受试者作为自己的对照,旨在评估减肥手术对循环microRNA表达谱的时间影响。方法:我们使用Exiqon优化的循环microRNA panel(包含179个经过验证的microRNA)和miRCURY锁定的核酸血浆/血清聚合酶链反应(PCR)来评估循环microRNA的表达。对Roux-en-Y胃旁路术(RYGB)患者术前及术后1个月、3个月、6个月、9个月和12个月的microRNAome进行测定。数据分析采用多变量和单变量统计。结果:与术前循环microRNA表达谱相比,RYGB改变循环microRNAome呈时间依赖性,48种循环microRNA的表达有显著差异。重要的是,这些后一种microrna与代谢功能障碍的调节和拯救途径相关,并与BMI、超重减重百分比和空腹血糖水平相关。结论:这项初步研究的结果表明,RYGB从根本上改变了循环中microRNA的表达,并随时间的推移逐渐偏离术前基线,表明microRNA是减肥手术获益的潜在新型生物标志物。
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来源期刊
BMC Obesity
BMC Obesity Medicine-Health Policy
CiteScore
5.00
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0.00%
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期刊介绍: Cesation (2019). Information not localized.
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