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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Nutrient selection in the absence of taste receptor signaling.
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Nutrient selection in the absence of taste receptor signaling.

机译:在没有味觉受体信号传导的情况下营养选择。

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摘要

When allowed to choose between different macronutrients, most animals display a strong attraction toward carbohydrates compared with proteins. It remains uncertain, however, whether this food selection pattern depends primarily on the sensory properties intrinsic to each nutrient or, alternatively, metabolic signals can act independently of the hedonic value of sweetness to stimulate elevated sugar intake. Here we show that Trpm5(-/-) mice, which lack the cellular mechanisms required for sweet and several forms of l-amino acid taste transduction, develop a robust preference for d-glucose compared with isocaloric l-serine independently of the perception of sweetness. Moreover, a close relationship was found between glucose oxidation and taste-independent nutrient intake levels, with animals increasing intake as a function of glucose oxidation rates. Furthermore, microdialysis measurements revealed nutrient-specific dopaminergic responses in accumbens and dorsal striatum during intragastric infusions of glucose or serine. Specifically, intragastric infusions of glucose induced significantly higher levels of dopamine release compared with isocaloric serine in both ventral and dorsal striatum. Intragastric stimulation of dopamine release seemed to depend on glucose utilization, because administration of an anti-metabolic glucose analog resulted in lower dopamine levels in striatum, an effect that was reversed by intravenous glucose infusions. Together, our findings suggest that carbohydrate-specific preferences can develop independently of taste quality or caloric load, an effect associated with the ability of a given nutrient to regulate glucose metabolism and stimulate brain dopamine centers.
机译:当允许在不同的MACRORURERSERS之间进行选择时,大多数动物与蛋白质相比显示出碳水化合物的强烈吸引力。然而,它仍然不确定,然而,这种食物选择模式是否主要取决于每个营养素的感觉特性,或者,代谢信号可以独立于甜味的蜂窝蜂甜度刺激升高的糖摄入量。在这里,我们表明TRPM5( - / - )小鼠缺乏甜味和几种形式的L-氨基酸味道转导所需的细胞机制,与ISOOMALIC L-丝氨酸相比,对D-葡萄糖的鲁棒偏好具有独立于感知甜蜜。此外,在葡萄糖氧化和无关的营养增生水平之间发现了密切的关系,随着葡萄糖氧化速率的函数而增加摄入量。此外,微透析测量揭示了葡萄糖或丝氨酸的胃内输注期间的尿道和背纹体中的营养特异性多巴胺能反应。具体而言,与腹侧和背体中的异马里丝氨酸相比,葡萄糖的胃内输注诱导更高水平的多巴胺释放。多巴胺释放的胃内刺激似乎取决于葡萄糖利用率,因为施用抗代谢葡萄糖类似物导致纹状体中的低多巴胺水平,其静脉内葡萄糖输注逆转的效果。我们的研究结果表明,碳水化合物的特异性偏好可以独立于味道质量或热量载荷,这是一种与给定营养素调节葡萄糖代谢的能力相关的效果,刺激脑多巴胺中心​​。

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