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Thematic Review Series: Calorie Restriction and Ketogenic Diets: Ketogenic diets mitochondria and neurological diseases

机译:专题回顾系列:热量限制和生酮饮食:生酮饮食线粒体和神经系统疾病

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摘要

The ketogenic diet (KD) is a broad-spectrum therapy for medically intractable epilepsy and is receiving growing attention as a potential treatment for neurological disorders arising in part from bioenergetic dysregulation. The high-fat/low-carbohydrate “classic KD”, as well as dietary variations such as the medium-chain triglyceride diet, the modified Atkins diet, the low-glycemic index treatment, and caloric restriction, enhance cellular metabolic and mitochondrial function. Hence, the broad neuroprotective properties of such therapies may stem from improved cellular metabolism. Data from clinical and preclinical studies indicate that these diets restrict glycolysis and increase fatty acid oxidation, actions which result in ketosis, replenishment of the TCA cycle (i.e., anaplerosis), restoration of neurotransmitter and ion channel function, and enhanced mitochondrial respiration. Further, there is mounting evidence that the KD and its variants can impact key signaling pathways that evolved to sense the energetic state of the cell, and that help maintain cellular homeostasis. These pathways, which include PPARs, AMP-activated kinase, mammalian target of rapamycin, and the sirtuins, have all been recently implicated in the neuroprotective effects of the KD. Further research in this area may lead to future therapeutic strategies aimed at mimicking the pleiotropic neuroprotective effects of the KD.
机译:生酮饮食(KD)是一种用于医学上难治的癫痫的广谱疗法,作为治疗部分由生物能调节异常引起的神经系统疾病的潜在疗法,受到越来越多的关注。高脂/低碳水化合物“经典KD”以及饮食变化(如中链甘油三酸酯饮食,改良的Atkins饮食,低血糖指数治疗和热量限制)可增强细胞代谢和线粒体功能。因此,这种疗法的广泛的神经保护特性可能源于细胞代谢的改善。来自临床和临床前研究的数据表明,这些饮食会限制糖酵解并增加脂肪酸氧化,导致酮症的作用,TCA周期的补充(即,动脉粥样硬化),神经递质和离子通道功能的恢复以及线粒体呼吸的增强。此外,越来越多的证据表明,KD及其变体可以影响关键的信号通路,这些信号通路演变为感知细胞的高能状态,并有助于维持细胞的动态平衡。这些途径,包括PPAR,AMP激活激酶,雷帕霉素的哺乳动物靶标和沉默调节蛋白,最近都与KD的神经保护作用有关。在这一领域的进一步研究可能会导致未来的治疗策略,旨在模仿KD的多效性神经保护作用。

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