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Adipogenesis is inhibited by brief daily exposure to high-frequency extremely low-magnitude mechanical signals

机译:每天短时间暴露于高频低幅值机械信号会抑制脂肪生成

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摘要

Obesity, a global pandemic that debilitates millions of people and burdens society with tens of billions of dollars in health care costs, is deterred by exercise. Although it is presumed that the more strenuous a physical challenge the more effective it will be in the suppression of adiposity, here it is shown that 15 weeks of brief, daily exposure to high-frequency mechanical signals, induced at a magnitude well below that which would arise during walking, inhibited adipogenesis by 27% in C57BL/6J mice. The mechanical signal also reduced key risk factors in the onset of type II diabetes, nonesterified free fatty acid and triglyceride content in the liver, by 43% and 39%, respectively. Over 9 weeks, these same signals suppressed fat production by 22% in the C3H.B6–6T congenic mouse strain that exhibits accelerated age-related changes in body composition. In an effort to understand the means by which fat production was inhibited, irradiated mice receiving bone marrow transplants from heterozygous GFP+ mice revealed that 6 weeks of these low-magnitude mechanical signals reduced the commitment of mesenchymal stem cell differentiation into adipocytes by 19%, indicating that formation of adipose tissue in these models was deterred by a marked reduction in stem cell adipogenesis. Translated to the human, this may represent the basis for the nonpharmacologic prevention of obesity and its sequelae, achieved through developmental, rather than metabolic, pathways.
机译:肥胖症是一种运动,它阻止了数百万人的全球性流行病,并使数百亿美元的医疗保健费用负担沉重。尽管据推测,身体挑战越剧烈,抑制肥胖症的效果就越强,但在此表明,每天短时间暴露于高频机械信号至少15周,其强度远低于此频率。 C57BL / 6J小鼠在行走过程中会产生脂肪,抑制27%的脂肪生成。机械信号还分别降低了II型糖尿病发作,肝中非酯化游离脂肪酸和甘油三酸酯含量的主要危险因素,分别降低了43%和39%。在9周内,这些相同的信号将C3H.B6-6T同基因小鼠品系中的脂肪产生抑制了22%,该品系显示出与年龄相关的身体组成加速变化。为了了解抑制脂肪产生的方法,接受杂合GFP + 小鼠骨髓移植的辐照小鼠发现,这些低强度机械信号中的6周降低了间充质干细胞的定性。脂肪细胞分化为脂肪细胞的比例为19%,表明这些模型中脂肪组织的形成被干细胞脂肪形成的显着减少所阻止。译为人类,这可能代表通过发育而非代谢途径实现的非药物预防肥胖症及其后遗症的基础。

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