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血神经屏障处糖转运的结构特异性

Structural specificity of sugar transport at the blood-nerve barrier.

作者信息

Rechthand E, Smith Q R, Rapoport S I

机构信息

Laboratory of Neurosciences, National Institute on Aging, Bethesda, MD 20892.

出版信息

J Neurochem. 1989 Jul;53(1):119-23. doi: 10.1111/j.1471-4159.1989.tb07302.x.

Abstract

The major component of D-glucose transfer across the membranous sites of the blood-nerve barrier (BNB) occurs via a facilitative mechanism at a rate greater than twice the rate of D-glucose metabolism by nerve. To characterize further properties of monosaccharide transport at the BNB, unidirectional transfer constant (K) values were determined in vivo in tibial nerve of anesthetized rats for radiolabeled mannitol, L-glucose, and a series of D-glucose analogs. K values(X 10(-4) mls-1 g-1) equaled 4.8 for 2-deoxy-D-glucose, 3.7 for D-glucose, 2.3 for 3-O-methyl-D-glucose, 1.4 for D-mannose, 0.6 for D-galactose, 0.2 for mannitol, and 0.19 for L-glucose. The rank order of ratios between K values of a D-hexose and D-glucose, which reflects the rank order of affinity of the system for individual sugars, was 2-deoxy-D-glucose greater than D-glucose greater than 3-O-methyl-D-glucose greater than D-mannose greater than D-galactose. The results demonstrate that the order of substrate affinity of the monosaccharide carrier at the BNB is similar to that at cerebral capillaries and at erythrocytes. At normal concentrations of plasma D-glucose, the contribution of simple passive diffusion to unidirectional D-glucose influx across the BNB equals 5%, which is greater than that at cerebral capillaries and reflects the greater permeability to hydrophilic nonelectrolytes of the endoneurial vasculature.

摘要

D-葡萄糖跨血-神经屏障(BNB)膜性部位的转运,其主要成分是通过易化机制进行的,转运速率大于神经对D-葡萄糖代谢速率的两倍。为了进一步表征BNB处单糖转运的特性,在麻醉大鼠的胫神经中,对放射性标记的甘露醇、L-葡萄糖和一系列D-葡萄糖类似物进行了体内单向转运常数(K)值的测定。2-脱氧-D-葡萄糖的K值(×10⁻⁴ ml s⁻¹ g⁻¹)为4.8,D-葡萄糖为3.7,3-O-甲基-D-葡萄糖为2.3,D-甘露糖为1.4,D-半乳糖为0.6,甘露醇为0.2,L-葡萄糖为0.19。D-己糖与D-葡萄糖的K值之比的排序,反映了该系统对各单糖亲和力的排序,为2-脱氧-D-葡萄糖>D-葡萄糖>3-O-甲基-D-葡萄糖>D-甘露糖>D-半乳糖。结果表明,BNB处单糖载体的底物亲和力顺序与脑毛细血管和红细胞处的相似。在血浆D-葡萄糖的正常浓度下,单纯被动扩散对BNB处单向D-葡萄糖内流的贡献为5%,这一比例高于脑毛细血管处,反映了神经内膜血管对亲水性非电解质的通透性更高。

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