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Intermittent metabolic switching neuroplasticity and brain health

机译:间歇性代谢转换神经可塑性和脑部健康

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摘要

During evolution, individuals whose brains and bodies functioned well in a fasted state were successful in acquiring food, enabling their survival and reproduction. With fasting and extended exercise, liver glycogen stores are depleted and ketones are produced from adipose-cell-derived fatty acids. This metabolic switch in cellular fuel source is accompanied by cellular and molecular adaptations of neural networks in the brain that enhance their functionality and bolster their resistance to stress, injury and disease. Here, we consider how intermittent metabolic switching, repeating cycles of a metabolic challenge that induces ketosis (fasting and/or exercise) followed by a recovery period (eating, resting and sleeping), may optimize brain function and resilience throughout the lifespan, with a focus on the neuronal circuits involved in cognition and mood. Such metabolic switching impacts multiple signalling pathways that promote neuroplasticity and resistance of the brain to injury and disease.
机译:在进化过程中,大脑和身体在禁食状态下运作良好的个体成功地获取了食物,从而得以生存和繁殖。通过禁食和长时间的运动,肝脏糖原的存储被耗尽,并且脂肪细胞来源的脂肪酸产生酮。细胞燃料来源中的这种新陈代谢转换伴随着大脑神经网络的细胞和分子适应,从而增强了它们的功能并增强了它们对压力,伤害和疾病的抵抗力。在这里,我们考虑间歇性的代谢转换,诱导酮症(禁食和/或运动)的代谢挑战的重复周期,随后的恢复期(进食,休息和睡眠)如何在整个生命周期内优化大脑功能和弹性。专注于涉及认知和情绪的神经元回路。这种代谢转换影响多种信号通路,这些信号通路促进神经可塑性和大脑对损伤和疾病的抵抗力。

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