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Metabolic and neuropsychiatric effects of calorie restriction and sirtuins

机译:热量限制和sirtuins的代谢和神经精神影响

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Most living organisms, including humans, age. Over time the ability to do physical and intellectual work deteriorates, and susceptibility to infectious, metabolic, and neurodegenerative diseases increases, which leads to general fitness decline and ultimately to death. Work in model organisms has demonstrated that genetic and environmental manipulations can prevent numerous age-associated diseases, improve health at advanced age, and increase life span. Calorie restriction (CR) (consumption of a diet with fewer calories but containing all the essential nutrients) is the most robust manipulation, genetic or environmental, to extend longevity and improve health parameters in laboratory animals. However, outside of the protected laboratory environment, the effects of CR are much less certain. Understanding the molecular mechanisms of CR may lead to the development of novel therapies to combat diseases of aging and to improve the quality of life. Sirtuins, a family of NAD +-dependent enzymes, mediate a number of metabolic and behavioral responses to CR and are intriguing targets for pharmaceutical interventions. We review the molecular understanding of CR; the role of sirtuins in CR; and the effects of sirtuins on physiology, mood, and behavior.
机译:大多数活生物体,包括人类,年龄都很大。随着时间的流逝,从事身体和智力工作的能力会下降,对传染性,代谢性和神经退行性疾病的易感性也会增加,这会导致总体健康状况下降,并最终导致死亡。在模型生物中的工作表明,遗传和环境操纵可以预防多种与年龄有关的疾病,改善高龄者的健康状况,并延长寿命。热量限制(CR)(低热量但包含所有必需营养素的饮食)是遗传或环境方面最有效的控制方法,可以延长实验动物的寿命并改善健康状况。但是,在受保护的实验室环境之外,CR的影响还不确定。了解CR的分子机制可能会导致抗衰老疾病和改善生活质量的新疗法的发展。 Sirtuins是NAD +依赖性酶的一个家族,介导许多对CR的代谢和行为反应,并且是药物干预的诱人靶标。我们回顾了对CR的分子理解; sirtuins在CR中的作用; sirtuins对生理,情绪和行为的影响。

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