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Modulation of Cellular Biochemistry Epigenetics and Metabolomics by Ketone Bodies. Implications of the Ketogenic Diet in the Physiology of the Organism and Pathological States

机译:酮体对细胞生物化学表观遗传学和代谢组学的调节。生酮饮食在生物体和病理状态生理中的意义

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摘要

Ketone bodies (KBs), comprising β-hydroxybutyrate, acetoacetate and acetone, are a set of fuel molecules serving as an alternative energy source to glucose. KBs are mainly produced by the liver from fatty acids during periods of fasting, and prolonged or intense physical activity. In diabetes, mainly type-1, ketoacidosis is the pathological response to glucose malabsorption. Endogenous production of ketone bodies is promoted by consumption of a ketogenic diet (KD), a diet virtually devoid of carbohydrates. Despite its recently widespread use, the systemic impact of KD is only partially understood, and ranges from physiologically beneficial outcomes in particular circumstances to potentially harmful effects. Here, we firstly review ketone body metabolism and molecular signaling, to then link the understanding of ketone bodies’ biochemistry to controversies regarding their putative or proven medical benefits. We overview the physiological consequences of ketone bodies’ consumption, focusing on (i) KB-induced histone post-translational modifications, particularly β-hydroxybutyrylation and acetylation, which appears to be the core epigenetic mechanisms of activity of β-hydroxybutyrate to modulate inflammation; (ii) inflammatory responses to a KD; (iii) proven benefits of the KD in the context of neuronal disease and cancer; and (iv) consequences of the KD’s application on cardiovascular health and on physical performance.
机译:包含β-羟基丁酸酯,乙酰乙酸酯和丙酮的酮体(KBs)是一组燃料分子,可作为葡萄糖的替代能源。空腹,长时间或强烈的体育活动期间,KBs主要由肝脏从脂肪酸中产生。在主要为1型糖尿病中,酮症酸中毒是对葡萄糖吸收不良的病理反应。食用生酮饮食(KD)可促进内源性酮体的生产,该饮食实际上不含碳水化合物。尽管最近已广泛使用KD,但对KD的系统性影响仅得到部分了解,范围从特定情况下的生理有益结果到潜在的有害影响。在这里,我们首先回顾酮体的新陈代谢和分子信号传导,然后将对酮体的生物化学的理解与关于其推定或已证明的医学益处的争议联系起来。我们概述了酮体消耗的生理后果,重点是(i)KB诱导的组蛋白翻译后修饰,特别是β-羟基丁酰化和乙酰化,这似乎是β-羟基丁酸酯调节炎症的核心表观遗传机制; (ii)对KD的炎症反应; (iii)在神经元疾病和癌症的背景下,KD的已证明的益处; (iv)KD的应用对心血管健康和身体机能的影响。

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