Impact of methionine restriction on muscle aerobic metabolism and hypertrophy in young and old mice on an obesogenic diet

IF 1.8 4区 生物学 Q4 CELL BIOLOGY
Anandini Swaminathan, L. Cesanelli, T. Venckunas, H. Degens
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引用次数: 1

Abstract

Abstract Methionine restriction (MR) reduces inflammation and increases longevity. We studied the effects of MR (0.17% kCal methionine, 10% kCal fat) and MR + high-fat diet (HFD) (0.17% methionine, 45% kCal fat) and overload-induced hypertrophy on inflammation, angiogenesis and mitochondrial activity in the hind-limb muscle in 10- and 26-month-old male C57BL/6J mice. Plasma IL-6 concentrations were higher in old compared to young mice. M. plantaris hypertrophy was accompanied by increased p-Akt, without a significant change in Akt and VEGF levels. In young mice on a HFD or MR + HFD diet the SDH activity was higher than in those from mice on other diets, irrespective of overload. There were no significant differences in total NAD concentration in the m. gastrocnemius. MR enhanced the skeletal muscle hypertrophic response in old age that was accompanied with an increase in p-Akt without significant changes in muscle oxidative capacity, low-grade systemic inflammation, NAD, VEGF or Akt levels.
蛋氨酸限制对肥胖饮食中年轻和老年小鼠肌肉有氧代谢和肥大的影响
摘要蛋氨酸限制(MR)可减少炎症并延长寿命。我们研究了MR(0.17%kCal蛋氨酸,10%kCal脂肪)和MR的影响 + 高脂肪饮食(HFD)(0.17%蛋氨酸,45%kCal脂肪)和超负荷诱导的10和26个月大雄性C57BL/6J小鼠后肢肌肉炎症、血管生成和线粒体活性的肥大。老年小鼠的血浆IL-6浓度高于年轻小鼠。跖分枝杆菌肥大伴有p-Akt增加,而Akt和VEGF水平没有显著变化。在HFD或MR上的年轻小鼠中 + HFD饮食中的SDH活性高于其他饮食中的小鼠,无论过载如何。腓肠肌中总NAD浓度没有显著差异。MR增强了老年骨骼肌肥大反应,并伴有p-Akt的增加,而肌肉氧化能力、轻度全身炎症、NAD、VEGF或Akt水平没有显著变化。
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来源期刊
Growth factors
Growth factors 生物-内分泌学与代谢
CiteScore
2.60
自引率
0.00%
发文量
20
审稿时长
>12 weeks
期刊介绍: Growth Factors is an international and interdisciplinary vehicle publishing new knowledge and findings on the regulators of cell proliferation, differentiation and survival. The Journal will publish research papers, short communications and reviews on current developments in cell biology, biochemistry, physiology or pharmacology of growth factors, cytokines or hormones which improve our understanding of biology or medicine. Among the various fields of study topics of particular interest include: •Stem cell biology •Growth factor physiology •Structure-activity relationships •Drug development studies •Clinical applications
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