解读衰老和肥胖中代谢弹性的下降
Qiuzhong Zhou1, Lexiang Yu2, Joshua R Cook3
1Cardiovascular and Metabolic Disorders Program, Duke-NUS Medical School, Singapore, Singapore.
Cell metabolism
|August 25, 2023
概括
生物通过代谢弹性,一种基因表达灵活性来适应不断变化的营养. 这种弹性随着年龄和肥胖而下降,影响能量平衡.
科学领域:
- 代谢调节和衰老研究.
背景情况:
- 有机体需要适应波动的营养物质可用性,以实现能量恒温.
- 代谢弹性描述了适应和恢复能量平衡的能力.
研究的目的:
- 引入和量化"代谢弹性"和"基因弹性",使用一种新的评分.
- 研究衰老和饮食对代谢和基因弹性的影响.
- 探索针对代谢弹性的治疗策略.
主要方法:
- 通过ad libitum-禁食-再养周期来建模代谢弹性.
- 开发和应用基因弹性评分来量化小鼠和非人类灵长类动物组织中的转录组多功能性.
- 分析PPARγ在脂肪组织中的作用及其通过营养条件的调节.
主要成果:
- 代谢和基因弹性对于适应营养物质波动至关重要.
- 基因弹性,特别是脂质和碳水化合物代谢,随着年龄和肥胖而下降.
- 脂肪组织中的PPARγ失调有助于减少弹性.
- 食定时的PPARγ激素增强了代谢效益和安全性.
- 饮食引起的肥胖反映了与年龄相关的代谢和基因弹性的下降.
结论:
- 代谢和基因弹性为了解代谢健康提供了一个动态框架.
- 衰老和肥胖会显著损害新陈代谢和基因弹性.
- 准PPARγ活动是一个潜在的策略,可以增强代谢弹性并减轻代谢不良后果.
关键词:
脂肪细胞的脂肪细胞.脂肪组织的脂肪组织.老化的老化 衰老的老化基因弹性 基因弹性肝脏 肝脏 肝脏 肝脏 肝脏 肝脏代谢下降 代谢下降代谢弹性 代谢弹性肌肉 肌肉 肌肉 肌肉 肌肉营养挑战 营养挑战肥胖 肥胖 肥胖 肥胖 肥胖 肥胖 肥胖 肥胖更多相关视频
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