二甲双胍
糖尿病前期
内分泌学
医学
内科学
安慰剂
安普克
外周血单个核细胞
PI3K/AKT/mTOR通路
2型糖尿病
生物
糖尿病
信号转导
磷酸化
细胞生物学
蛋白激酶A
病理
体外
替代医学
生物化学
作者
Saula Vigili de Kreutzenberg,Giulio Ceolotto,Anna Maria Cattelan,Elisa Pagnin,M. Mazzucato,Paolo Garagnani,Vincenzo Borelli,Maria Giulia Bacalini,Claudio Franceschi,Gian Paolo Fadini,Angelo Avogaro
标识
DOI:10.1016/j.numecd.2015.03.007
摘要
Background and aims Prediabetes increases cardiovascular risk and is associated with excess mortality. In preclinical models, metformin has been shown to exert anti-ageing effects. In this study, we sought to assess whether metformin modulates putative effector longevity programs in prediabetic subjects. Methods and results In a randomized, single-blind, placebo-controlled trial, 38 prediabetic subjects received metformin (1500 mg/day) or placebo for 2 months. At baseline and after treatment, we collected anthropometric and metabolic parameters. Gene and protein levels of SIRT1, mTOR, p53, p66Shc, SIRT1 activity, AMPK activation, telomere length, and SIRT1 promoter chromatin accessibility were determined in peripheral blood mononuclear cells (PBMCs). Plasma N-glycans, non-invasive surrogate markers of ageing, were also analysed. Compared to baseline, metformin significantly improved metabolic parameters and insulin sensitivity, increased SIRT1 gene/protein expression and SIRT1 promoter chromatin accessibility, elevated mTOR gene expression with concomitant reduction in p70S6K phosphorylation in subjects' PBMCs, and modified the plasma N-glycan profile. Compared to placebo, metformin increased SIRT1 protein expression and reduced p70S6K phosphorylation (a proxy of mTOR activity). Plasma N-glycans were also favourably modified by metformin compared to placebo. Conclusion In individuals with prediabetes, metformin ameliorated effector pathways that have been shown to regulate longevity in animal models. ClinicalTrials.gov Identifier NCT01765946 – January 2013.
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