Department of Endocrinology, Bispebjerg University Hospital, 2400 Copenhagen, Denmark.
Copenhagen Center for Translational Research, Copenhagen University Hospital, Bispebjerg and Frederiksberg, 2400 Copenhagen, Denmark.
Int J Mol Sci. 2020 Nov 20;21(22):8767. doi: 10.3390/ijms21228767.
Under normal physiological conditions the brain primarily utilizes glucose for ATP generation. However, in situations where glucose is sparse, e.g., during prolonged fasting, ketone bodies become an important energy source for the brain. The brain's utilization of ketones seems to depend mainly on the concentration in the blood, thus many dietary approaches such as ketogenic diets, ingestion of ketogenic medium-chain fatty acids or exogenous ketones, facilitate significant changes in the brain's metabolism. Therefore, these approaches may ameliorate the energy crisis in neurodegenerative diseases, which are characterized by a deterioration of the brain's glucose metabolism, providing a therapeutic advantage in these diseases. Most clinical studies examining the neuroprotective role of ketone bodies have been conducted in patients with Alzheimer's disease, where brain imaging studies support the notion of enhancing brain energy metabolism with ketones. Likewise, a few studies show modest functional improvements in patients with Parkinson's disease and cognitive benefits in patients with-or at risk of-Alzheimer's disease after ketogenic interventions. Here, we summarize current knowledge on how ketogenic interventions support brain metabolism and discuss the therapeutic role of ketones in neurodegenerative disease, emphasizing clinical data.
在正常生理条件下,大脑主要利用葡萄糖来生成 ATP。然而,在葡萄糖匮乏的情况下,例如长时间禁食时,酮体成为大脑的重要能量来源。大脑对酮体的利用似乎主要取决于血液中的浓度,因此许多饮食方法,如生酮饮食、摄入生酮中链脂肪酸或外源性酮体,可显著改变大脑的代谢。因此,这些方法可能改善神经退行性疾病中的能量危机,这些疾病的特征是大脑葡萄糖代谢恶化,为这些疾病提供治疗优势。大多数研究酮体的神经保护作用的临床研究都在阿尔茨海默病患者中进行,脑成像研究支持用酮体增强大脑能量代谢的观点。同样,一些研究显示,生酮干预后,帕金森病患者的功能有一定程度的改善,阿尔茨海默病患者或有患病风险的患者的认知能力也有获益。在这里,我们总结了关于生酮干预如何支持大脑代谢的现有知识,并讨论了酮体在神经退行性疾病中的治疗作用,强调了临床数据。
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