首页> 外文期刊>The British Journal of Nutrition >Effect of lifelong carnitine supplementation on plasma and tissue carnitine status, hepatic lipid metabolism and stress signalling pathways and skeletal muscle transcriptome in mice at advanced age
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Effect of lifelong carnitine supplementation on plasma and tissue carnitine status, hepatic lipid metabolism and stress signalling pathways and skeletal muscle transcriptome in mice at advanced age

机译:终身肉毒碱补充对晚期小鼠血浆和组织肉毒碱状态,肝脂代谢和应力信号传导途径和骨骼肌转录组的影响

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摘要

While strong evidence from clinical studies suggests beneficial effects of carnitine supplementation on metabolic health, serious safety concerns associated with carnitine supplementation have been raised from studies in mice. Considering that the carnitine doses in these mice studies were up to 100 times higher than those used in clinical studies, the present study aimed to address possible safety concerns associated with long-term supplementation of a carnitine dose used in clinical trials. Two groups of NMRI mice were fed either a control or a carnitine-supplemented diet (1 g/kg diet) from weaning to 19 months of age, and parameters of hepatic lipid metabolism and stress signalling and skeletal muscle gene expression were analysed in the mice at 19 months of age. Concentrations of free carnitine and acetylcarnitine in plasma and tissues were higher in the carnitine than in the control group (P0·05). Plasma concentrations of free carnitine and acetylcarnitine were higher in mice at adult age (10 and 15 months) than at advanced age (19 months) (P0·05). Hepatic mRNA and protein levels of genes involved in lipid metabolism and stress signalling and hepatic and plasma lipid concentrations did not differ between the carnitine and the control group. Skeletal muscle transcriptome analysis in 19-month-old mice revealed only a moderate regulation between carnitine and control group. Lifelong carnitine supplementation prevents an age-dependent impairment of plasma carnitine status, but safety concerns associated with long-term supplementation of carnitine at doses used in clinical trials can be considered as unfounded.
机译:虽然来自临床研究的强有力证据表明肉毒碱补充对代谢健康的有益作用,但从小鼠的研究中提出了与肉豆蔻碱相关的严重安全问题。考虑到这些小鼠研究中的肉碱剂量高达临床研究中使用的肉毒碱剂量,本研究旨在解决与临床试验中使用的肉碱剂量的长期补充相关的可能存在的安全问题。将两组NMRI小鼠从断奶中喂食对照或肉碱补充饮食(1g / kg饮食),并且在小鼠中分析了肝脂代谢和应激信号和骨骼肌基因表达的参数在19个月的年龄。肉毒碱中血浆和组织中游离肉碱和乙酰氨基碱的浓度高于对照组(P <0·05)。成人年龄(10和15个月)小鼠比晚年(19个月)(P <0·05)小鼠血浆浓度较高。参与脂质代谢和应力信号传导和肝脏和血浆脂质浓度的肝脏mRNA和蛋白质水平在肉碱和对照组之间没有区别。 19个月大鼠中的骨骼肌转录组分析仅揭示了肉碱和对照组之间的中度调节。终身肉碱补充剂可防止血浆肉碱状况的年龄依赖性损害,但可以认为临床试验中使用的剂量的肉碱长期补充的安全问题可以被认为是毫无根据的。

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