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Active transport of 131I across the blood—brain barrier

机译:131I主动转运穿过血脑屏障

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摘要

The ventricular space of rabbits was perfused with a low-viscosity silicone oil for the purpose of (1) collecting freshly secreted cerebrospinal fluid (c.s.f.) uninfluenced by diffusional exchanges with the brain and (2) studying passage of solutes from the blood into the brain, uncomplicated by exchanges with c.s.f. The freshly secreted c.s.f. appeared as fine droplets suspended in the less dense silicone, and accumulated at the bottom of the collected silicone. Studies on the penetration of 24Na from blood into this fluid indicated that considerable exchanges with the brain had occurred between its secretion and collection, in spite of this method of collection.The second objective was attained, in that the exchanges between the freshly secreted fluid and the brain were quantitatively insufficient to affect the measure of kinetics of uptake by brain from the blood. In consequence, it was possible to demonstrate unequivocally that the increased uptake by brain of 131I, when treated with perchlorate, was due to inhibition of an active process occurring across the blood—brain barrier.Other studies, involving ventriculo-cisternal perfusion with artificial c.s.f., lent further support to this concept. 131I distribution is some 32% of the brain weight, a figure close to the `chloride-space'.
机译:为了给兔的心室腔灌注低粘度的硅油,其目的是:(1)收集不受脑扩散交换影响的新鲜分泌的脑脊液(csf),以及(2)研究溶质从血液进入大脑的过程,无需与csf进行交换新鲜分泌的c.s.f.出现为悬浮在密度较小的硅树脂中的细小液滴,并聚集在收集的硅树脂的底部。对 24 Na从血液中渗透到这种液体中的研究表明,尽管采用这种收集方法,但在大脑的分泌和收集之间仍发生了相当多的交换。第二个目的是这样实现的:新鲜分泌的液体和大脑之间的交换在数量上不足以影响大脑从血液中摄取的动力学。因此,有可能明确地证明, 131 I在大脑中的摄取被高氯酸盐处理时增加,是由于抑制了跨血-脑屏障的活跃过程。其他研究,涉及脑室-脑池灌注与人工脑脊液的研究,为这一概念提供了进一步的支持。 131 I分布约占大脑重量的32%,这个数字接近“氯化物空间”。

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