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血脑脊髓液屏障是脑肌酐清除的主要途径:转运体介导过程的参与。

The blood-cerebrospinal fluid barrier is a major pathway of cerebral creatinine clearance: involvement of transporter-mediated process.

作者信息

Tachikawa Masanori, Kasai Yasuyuki, Takahashi Masato, Fujinawa Jun, Kitaichi Kiyoyuki, Terasaki Tetsuya, Hosoya Ken-Ichi

机构信息

Department of Pharmaceutics, Graduate School of Medicine and Pharmaceutical Sciences, University of Toyama, Toyama, Japan.

出版信息

J Neurochem. 2008 Oct;107(2):432-42. doi: 10.1111/j.1471-4159.2008.05641.x. Epub 2008 Aug 22.

Abstract

There is still incomplete evidence for the cerebral clearance of creatinine (CTN) which is an endogenous convulsant and accumulates in the brain and CSF of patients with renal failure. The purpose of this study was to clarify the transporter-mediated CTN efflux transport from the brain/CSF. In vivo data demonstrated that CTN after intracerebral administration was not significantly eliminated from the brain across the blood-brain barrier. In contrast, the elimination clearance of CTN from the CSF was 60-fold greater than that of inulin, reflecting CSF bulk flow. Even in renal failure model rats, the increasing ratio of the CTN concentration in the CSF was lower than that in the plasma, suggesting a significant role for the CSF-to-blood efflux process. The inhibitory effects of inhibitors and antisense oligonucleotides on CTN uptake by isolated choroid plexus indicated the involvement of rat organic cation transporter 3 (rOCT3) and creatine transporter (CRT) in CTN transport. rOCT3- and CRT-mediated low-affinity CTN transport with K(m) values of 47.7 and 52.0 mM, respectively. Our findings suggest that CTN is eliminated from the CSF across the blood-CSF barrier as a major pathway of cerebral CTN clearance and transporter-mediated processes are involved in the CTN transport in the choroid plexus.

摘要

肌酐(CTN)是一种内源性惊厥剂,在肾衰竭患者的大脑和脑脊液中蓄积,目前关于其脑清除率的证据仍不完整。本研究的目的是阐明转运体介导的CTN从脑/脑脊液的外向转运。体内数据表明,脑内给药后,CTN无法通过血脑屏障从脑中显著清除。相反,CTN从脑脊液中的清除率比菊粉高60倍,反映了脑脊液的整体流动。即使在肾衰竭模型大鼠中,脑脊液中CTN浓度的增加比例也低于血浆中的增加比例,这表明脑脊液向血液的外向转运过程起重要作用。抑制剂和反义寡核苷酸对分离的脉络丛摄取CTN的抑制作用表明,大鼠有机阳离子转运体3(rOCT3)和肌酸转运体(CRT)参与了CTN的转运。rOCT3和CRT介导的CTN低亲和力转运,其米氏常数(K(m))分别为47.7和52.0 mM。我们的研究结果表明,CTN作为脑CTN清除的主要途径,通过血脑脊液屏障从脑脊液中清除,转运体介导的过程参与了脉络丛中CTN的转运。

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