禁食对BEH+/+和BEL小鼠体组成及骨骼肌和肝脏蛋白水解基因表达的影响。

IF 1.8 4区 生物学 Q4 CELL BIOLOGY
Growth factors Pub Date : 2020-12-01 Epub Date: 2021-08-06 DOI:10.1080/08977194.2021.1960831
Edgaras Lapinskas, Raulas Krusnauskas, Agne Cekanauskaite, Aivaras Ratkevicius
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引用次数: 1

摘要

禁食能促进健康,但也会导致肌肉无力。我们对21周龄的柏林高(BEH+/+)株和柏林低(BEL)株雄性进行了两组48小时或40小时的禁食(中间再饲喂5天)后的体成分评估。与BEL相比,BEH+/+小鼠在第1和第2回合的体重减轻较少(16.0±2.7 vs 23.5±2.9%,p p = 0.17)。尽管血清IGF-1和体脂水平较高,但与BEL小鼠相比,BEH+/+小鼠表现出更严重的肌肉萎缩,但肝脏消耗和脂肪消耗不那么明显。BEH+/+小鼠骨骼肌中p62、Atrogin-1和Mstn基因的表达也有较小的增加。总之,尽管低血清IGF-1水平和高表达与肌肉萎缩相关的基因,BEL小鼠对禁食诱导的肌肉萎缩表现出抵抗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of fasting on body composition and proteolysis gene expression in skeletal muscles and liver of BEH+/+ and BEL mice.

Fasting improves health, but can cause muscle weakness. We assessed body composition in 21-week old males of Berlin high (BEH+/+) and Berlin low (BEL) strains after two bouts of 48-h or 40-h of fasting with 5-day refeeding in between, respectively. BEH+/+ mice tended to loose less weight than BEL in bout 1 and 2 (16.0 ± 2.7 versus 23.5 ± 2.9%, p < 0.001 and 17.1 ± 3.4 versus 20.4 ± 3.4%, p = 0.17, respectively). In spite of greater serum IGF-1 and body fat levels, BEH+/+ mice showed more severe muscle atrophy, but less marked liver wasting and fat depletion than BEL mice. BEH+/+ mice also showed smaller increases in expression of p62, Atrogin-1, and Mstn genes in skeletal muscles. In summary, BEL mice show resistance to fasting-induced muscle wasting in spite of low serum IGF-1 levels and high expression of genes associated with muscle atrophy.

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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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