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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >The rate-limiting step for glucose transport into the hypothalamus is across the blood-hypothalamus interface.
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The rate-limiting step for glucose transport into the hypothalamus is across the blood-hypothalamus interface.

机译:葡萄糖进入下丘脑的限速步骤是通过血液-下丘脑界面。

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Specialized glucosensing neurons are present in the hypothalamus, some of which neighbor the median eminence, where the blood-brain barrier has been reported leaky. A leaky blood-brain barrier implies high tissue glucose levels and obviates a role for endothelial glucose transporters in the control of hypothalamic glucose concentration, important in understanding the mechanisms of glucose sensing We therefore addressed the question of blood-brain barrier integrity at the hypothalamus for glucose transport by examining the brain tissue-to-plasma glucose ratio in the hypothalamus relative to other brain regions. We also examined glycogenolysis in hypothalamus because its occurrence is unlikely in the potential absence of a hypothalamus-blood interface. Across all regions the concentration of glucose was comparable at a given plasma glucose concentration and was a near linear function of plasma glucose. At steady-state, hypothalamic glucose concentration was similar to the extracellular hypothalamic glucose concentration reported by others. Hypothalamic glycogen fell at a rate of approximately 1.5 micromol/g/h and remained present in substantial amounts. We conclude for the hypothalamus, a putative primary site of brain glucose sensing that: the rate-limiting step for glucose transport into brain cells is at the blood-hypothalamus interface, and that glycogenolysis is consistent with a substantial blood -to- intracellular glucose concentration gradient.
机译:下丘脑中存在专门的葡萄糖化神经元,其中一些邻近中位隆起,据报道血脑屏障泄漏。渗漏的血脑屏障意味着高组织葡萄糖水平,并消除了内皮葡萄糖转运蛋白在控制下丘脑葡萄糖浓度中的作用,这在理解葡萄糖感应机制中很重要。因此,我们探讨了下丘脑血脑屏障完整性的问题。通过检查下丘脑相对于其他大脑区域的大脑组织与血浆葡萄糖的比率来进行葡萄糖转运。我们还检查了下丘脑的糖原分解,因为在潜在缺乏下丘脑-血液界面的情况下不太可能发生糖原分解。在所有区域中,葡萄糖浓度在给定的血浆葡萄糖浓度下是可比的,并且是血浆葡萄糖的近线性函数。在稳态下丘脑葡萄糖浓度与其他人报道的细胞外丘脑葡萄糖浓度相似。下丘脑糖原的下降速度约为1.5微摩尔/克/小时,并以大量存在。我们得出的下丘脑的结论是大脑葡萄糖感测的一个假定的主要部位,它认为:葡萄糖转运到脑细胞的限速步骤是在血液-下丘脑界面,并且糖原分解与血液-细胞内葡萄糖的大量浓度是一致的梯度。

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