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首页> 外文期刊>The Journal of Physiology >Glucose utilization rates regulate intake levels of artificial sweeteners
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Glucose utilization rates regulate intake levels of artificial sweeteners

机译:葡萄糖利用率调节人造甜味剂的摄入量

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Abstract It is well established that animals including humans attribute greater reinforcing value to glucose-containing sugars compared to their non-caloric counterparts, generally termed 'artificial sweeteners'. However, much remains to be determined regarding the physiological signals and brain systems mediating the attribution of greater reinforcing value to sweet solutions that contain glucose. Here we show that disruption of glucose utilization in mice produces an enduring inhibitory effect on artificial sweetener intake, an effect that did not depend on sweetness perception or aversion. Indeed, such an effect was not observed in mice presented with a less palatable, yet caloric, glucose solution. Consistently, hungry mice shifted their preferences away from artificial sweeteners and in favour of glucose after experiencing glucose in a hungry state. Glucose intake was found to produce significantly greater levels of dopamine efflux compared to artificial sweetener in dorsal striatum, whereas disrupting glucose oxidation suppressed dorsal striatum dopamine efflux. Conversely, inhibiting striatal dopamine receptor signalling during glucose intake in sweet-na?ve animals resulted in reduced, artificial sweetener-like intake of glucose during subsequent gluco-deprivation. Our results demonstrate that glucose oxidation controls intake levels of sweet tastants by modulating extracellular dopamine levels in dorsal striatum, and suggest that glucose utilization is one critical physiological signal involved in the control of goal-directed sweetener intake.
机译:摘要众所周知,与动物相比,包括人类在内的动物对含葡萄糖的糖所赋予的增强价值更大,而非卡路里的同类动物通常被称为“人造甜味剂”。然而,关于介导更大的增强值归因于含有葡萄糖的甜溶液的生理信号和脑系统,还有许多待定。在这里,我们表明破坏小鼠葡萄糖的利用会对人造甜味剂的摄入产生持久的抑制作用,这种作用不依赖于甜味的感知或厌恶。的确,在呈现出可口但热量较低的葡萄糖溶液的小鼠中未观察到这种作用。一致地,在饥饿状态下经历葡萄糖后,饥饿的小鼠将偏好从人造甜味剂转移到葡萄糖上。与背侧纹状体中的人造甜味剂相比,发现摄入葡萄糖会产生更高水平的多巴胺外排,而破坏葡萄糖氧化会抑制背侧纹状体多巴胺外排。相反,在幼稚动物的葡萄糖摄入过程中抑制纹状体多巴胺受体信号转导导致随后的葡萄糖剥夺过程中人造甜味剂样葡萄糖的摄入减少。我们的结果表明,葡萄糖氧化可通过调节背侧纹状体中的细胞外多巴胺水平来控制甜味剂的摄入水平,并表明葡萄糖利用是控制目标甜味剂摄入量的关键生理信号之一。

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