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大鼠中嘧啶核苷和嘧啶碱基的血脑屏障外排转运

Blood-brain barrier efflux transport of pyrimidine nucleosides and nucleobases in the rat.

作者信息

Redzic Zoran B, Malatiali Slava A, Craik James D, Rakic Miodrag L, Isakovic Aleksandra J

机构信息

Department of Physiology, Faculty of Medicine, Kuwait University, P.O. Box 24923, Safat 13110, Kuwait.

出版信息

Neurochem Res. 2009 Mar;34(3):566-73. doi: 10.1007/s11064-008-9823-5. Epub 2008 Aug 27.

Abstract

The brain efflux index (BEI), a measurement of blood-brain barrier (BBB) efflux transport, was estimated at 15 s, 30 s, 1 min, 3 min and 10 min after intracerebral injection of [14C]pyrimidines. An initial steep increase of the BEI values over time was observed for [14]uracil and [14C]thymine, followed by a more moderate increase after 1 min. For the corresponding nucleosides, [14C]uridine and [14C]thymidine, the increase of BEI values over time was less steep and linear between 30 s and 3 min. The apparent BBB efflux clearances for [14C]uridine, [14C]thymidine, [14C]uracil and [14C]thymine were (microl/min/g): 95.2 +/- 12.1, 125.3 +/- 18.4, 290.4 +/- 28 and 358.5 +/- 32.5, respectively, which is at least several folds higher than the predicted BBB influx clearances of uridine, uracil and thymidine. Quick depletion of brain parenchyma from brain microvasculature has revealed that [14C] radioactivity accumulated in brain microvessels after injection of nucleosides [14C]thymidine and [14C]uridine, but that was not observed when nucleobases, [14C]thymine and [14C]uracil, were injected. Reverse transcriptase-PCR revealed that the rat brain and liver (positive control) express dihydropyrimidine dehydrogenase, a key enzyme in pyrimidine nucleobase catabolism. Two bands representing spliced variants have been detected with the relative density of the bands (expressed relative to the density of glyceraldehyde3-phosphate dehydrogenase bands, mean +/- SEM from 3 separate samples) 0.16 +/- 0.06 and 0.04 +/- 0.01 (brain) and 0.49 +/- 0.1 and 0.07 +/- 0.01 (liver). Overall, these results indicate that the net direction of pyrimidine BBB transport is the efflux transport; rapid BBB efflux transport and metabolic breakdown of pyrimidine nucleobases appear to be important for brain homeostasis.

摘要

在脑内注射[14C]嘧啶后15秒、30秒、1分钟、3分钟和10分钟时,对血脑屏障(BBB)外排转运的一种测量指标——脑外排指数(BEI)进行了评估。对于[14]尿嘧啶和[14C]胸腺嘧啶,观察到BEI值随时间最初急剧上升,随后在1分钟后上升较为平缓。对于相应的核苷,[14C]尿苷和[14C]胸苷,在30秒至3分钟之间,BEI值随时间的增加较平缓且呈线性。[14C]尿苷、[14C]胸苷、[14C]尿嘧啶和[14C]胸腺嘧啶的表观BBB外排清除率分别为(微升/分钟/克):95.2±12.1、125.3±18.4、290.4±28和358.5±32.5,这至少比尿苷、尿嘧啶和胸腺嘧啶预测的BBB内流清除率高几倍。脑实质从脑微血管的快速耗尽表明,注射核苷[14C]胸苷和[14C]尿苷后,[14C]放射性在脑微血管中积累,但注射核碱基[14C]胸腺嘧啶和[14C]尿嘧啶时未观察到这种情况。逆转录聚合酶链反应显示,大鼠脑和肝脏(阳性对照)表达二氢嘧啶脱氢酶,这是嘧啶核碱基分解代谢中的一种关键酶。检测到代表剪接变体的两条带,其条带的相对密度(相对于甘油醛-3-磷酸脱氢酶条带的密度表示,来自3个独立样本的平均值±标准误)在脑内为0.16±0.06和0.04±0.01,在肝脏中为0.49±0.1和0.07±0.01。总体而言,这些结果表明嘧啶BBB转运的净方向是外排转运;嘧啶核碱基的快速BBB外排转运和代谢分解似乎对脑内稳态很重要。

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