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Orexin neurons as conditional glucosensors: paradoxical regulation of sugar sensing by intracellular fuels

机译:食欲素神经元作为条件性葡萄糖受体:细胞内燃料对糖感的反常调节

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摘要

Non-technical summaryBrain orexin/hypocretin neurons stimulate wakefulness, feeding, reward-seeking and healthy glucose balance. The activity of orexin neurons is tightly regulated by several hormones, neurotransmitters and nutrients. Intriguingly, elevated glucose concentration can block or silence the activity of orexin neurons. We identified an unexpected way to control these effects of glucose on orexin neurons. We found that supplying orexin neurons with other energy-related molecules, such as pyruvate and lactate, can stop glucose from blocking orexin neurons. We hypothesize that orexin neurons only ‘see’ glucose changes when the levels of other energy molecules are low, whereas high energy levels can stop glucose from regulating orexin cells. This may shed new light on understanding how the brain is influenced by changes in glucose levels during different metabolic situations, such as fasting, eating different diets, or in disease states such as diabetes and obesity.
机译:非技术总结脑部食欲素/降血糖素神经元刺激觉醒,进食,寻求奖励和健康的葡萄糖平衡。食欲素神经元的活动受到几种激素,神经递质和营养素的严格调控。有趣的是,升高的葡萄糖浓度可以阻断或沉默食欲肽神经元的活性。我们发现了一种意想不到的方式来控制葡萄糖对食欲素神经元的这些作用。我们发现,向食欲素神经元提供其他能量相关分子,例如丙酮酸和乳酸,可以阻止葡萄糖阻断食欲素神经元。我们假设,当其他能量分子水平较低时,食欲素神经元只能“看到”葡萄糖的变化,而高能水平可以阻止葡萄糖调节食欲素细胞。这可能为了解大脑在不同的新陈代谢情况(如禁食,饮食不同的饮食习惯)或疾病状态(如糖尿病和肥胖症)中如何受到葡萄糖水平变化的影响提供新的思路。

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