Fuglsang A, Lomholt M, Gjedde A
J Neurochem. 1986 May;46(5):1417-28. doi: 10.1111/j.1471-4159.1986.tb01757.x.
Little is known of the selectivity of the blood-brain barrier at birth. Hexoses are transported through the barrier by a facilitating mechanism. To study the capacity of this mechanism to distinguish between analogs of D-glucose, we compared the transport of fluorodeoxyglucose, deoxyglucose, glucose, methylglucose, mannose, galactose, mannitol, and iodoantipyrine across the cerebral capillary endothelium in newborn Wistar rats. Cerebral blood flow, glucose consumption, and the blood-brain permeabilities of the hexoses were 25-50% of the adult values but the ratios between the permeabilities of the individual hexoses were similar to the ratios observed in adult rats. The mannitol clearance into brain was considerably higher than in adult rats (about 10-fold), indicating a higher endothelial permeability to small polar nonelectrolytes. The brain water content was higher in newborn than in adult rats and was associated with a higher steady-state distribution of labeled methylglucose between brain and blood. Hexose concentrations were determined relative to whole blood because the apparent erythrocyte membrane permeability to glucose was as high as in humans and thus considerably higher than in adult rats. The half-saturation concentration of glucose transport across the blood-brain barrier was considerably higher than in adult rats, about three-fold, suggesting that net blood-brain glucose transfer is less sensitive to blood glucose fluctuation in newborn than in adult rats.
关于血脑屏障在出生时的选择性,人们了解甚少。己糖通过一种易化机制穿过该屏障。为了研究这种机制区分D - 葡萄糖类似物的能力,我们比较了氟代脱氧葡萄糖、脱氧葡萄糖、葡萄糖、甲基葡萄糖、甘露糖、半乳糖、甘露醇和碘安替比林在新生Wistar大鼠脑毛细血管内皮中的转运情况。脑血流量、葡萄糖消耗量以及己糖的血脑通透性为成年值的25 - 50%,但各个己糖通透性之间的比值与成年大鼠中观察到的比值相似。甘露醇进入脑内的清除率显著高于成年大鼠(约10倍),表明内皮对小极性非电解质的通透性更高。新生大鼠的脑含水量高于成年大鼠,并且与标记甲基葡萄糖在脑和血液之间更高的稳态分布相关。己糖浓度是相对于全血测定的,因为红细胞膜对葡萄糖的表观通透性与人类一样高,因此比成年大鼠高得多。葡萄糖穿过血脑屏障的半饱和浓度比成年大鼠高得多,约为三倍,这表明新生大鼠中血脑葡萄糖净转运对血糖波动的敏感性低于成年大鼠。