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血脑屏障通透性的生化调节

Biochemical modulation of blood-brain barrier permeability.

作者信息

Gjedde A, Crone C

出版信息

Acta Neuropathol Suppl. 1983;8:59-74. doi: 10.1007/978-3-642-68970-3_5.

Abstract

Hydrophilic substrates necessary for brain function cross the capillary by facilitated diffusion. The facilitation has many features in common with enzyme-catalyzed reactions and is probably subserved by protein entities in the endothelial wall. The proteins act as receptors, recognizing substrate molecules, and as translocators, giving the molecules access to an aqueous path through the endothelium. These receptor-translocators can be saturated, and the transport is subject to competitive inhibition by substrate analogs. Thus, amino acids inhibit the transport of each other, and galactose can inhibit glucose transport in suckling rats. The proteins can be induced, as in the case of ketone transport in starvation, and repressed, as in the case of glucose transport in hyperglycemia. In rats with hyperglycemia for three weeks, the maximum glucose transport capacity of the blood-brain barrier decreased from 400 to 290 mumol/hg/min. An important result of the description is the understanding that rigid distinctions between the function of receptors, translocators, and enzymes is impossible. Understanding of the biochemical properties of facilitated diffusion may help explain a variety of symptoms in many 'inborn errors of metabolism'. This understanding has followed greater, recent insights into the general properties of the blood-brain barrier (45,46,47).

摘要

脑功能所需的亲水性底物通过易化扩散穿过毛细血管。这种易化作用具有许多与酶催化反应相同的特征,可能是由内皮壁中的蛋白质实体介导的。这些蛋白质作为受体识别底物分子,并作为转运体,使分子能够通过内皮进入水性通道。这些受体 - 转运体可以饱和,并且转运受到底物类似物的竞争性抑制。因此,氨基酸相互抑制转运,半乳糖可以抑制乳鼠中的葡萄糖转运。这些蛋白质可以被诱导,如饥饿时酮转运的情况,也可以被抑制,如高血糖时葡萄糖转运的情况。在高血糖三周的大鼠中,血脑屏障的最大葡萄糖转运能力从400降至290 μmol/hg/min。上述描述的一个重要结果是认识到受体、转运体和酶的功能之间不可能有严格的区分。对易化扩散生化特性的理解可能有助于解释许多“先天性代谢缺陷”中的各种症状。这种理解是在最近对血脑屏障的一般特性有了更深入的认识之后才出现的(45,46,47)。

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