Transendothelial permeability changes induced by free radicals in an in vitro model of the blood-brain barrier

被引:77
作者
Lagrange, P
Romero, IA
Minn, A [1 ]
Revest, PA
机构
[1] Univ Nancy 1, Fac Med, Pharmacol Lab, CNRS,UMR 7561, F-54505 Vandoeuvre Les Nancy, France
[2] Univ Limoges, Lab Pathol Pulm Expt, Razes, France
[3] Queen Mary Univ London, Dept Physiol, London E1 4NS, England
[4] Kings Coll London, Dept Physiol, London WC2R 2LS, England
关键词
blood-brain barrier; cerebrovascular endothelial cells; RBE4 cell line; oxidative stress; xenobiotics; free radicals;
D O I
10.1016/S0891-5849(99)00112-4
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
In the present study, we investigated the changes in blood-brain barrier (BBB) permeability following brain endothelial cell exposure to different xenobiotics able to promote free radical generation during their metabolism. Our in vitro BBB model consisted of confluent monolayers of immortalized rat brain capillary endothelial cells (RBE4) grown on collagen-coated filters in the presence of C6 glioma cells grown in the lower compartment. We have recently shown that a range of xenobiotics, including menadione, nitrofurazone, and methylviologen (paraquat) may undergo monoelectronic redox cycling in isolated brain capillaries, giving rise to reactive oxygen species. In this study, addition of 100 mu M menadione to the culture medium for 30 min significantly increased the permeability of endothelial cell monolayers to radiolabeled sucrose, The effect on endothelial permeability induced by menadione was dose-dependent and reversible. These permeability changes preceded the onset of cell death, as assessed by the Trypan blue exclusion method. Pre-incubation with superoxide dismutase and catalase blocked changes in sucrose permeability to control levels in a dose-dependent manner, suggesting the involvement of reactive oxygen species in menadione-induced BBB opening. (C) 1999 Elsevier Science Inc.
引用
收藏
页码:667 / 672
页数:6
相关论文
共 20 条
[1]  
ABBOTT NJ, 1991, CEREBROVAS BRAIN MET, V3, P39
[2]  
Betz A. Lorris, 1993, P303
[3]   Drug metabolizing enzyme activities and superoxide formation in primary and immortalized rat brain endothelial cells [J].
Chat, M ;
Bayol-Denizot, C ;
Suleman, G ;
Roux, F ;
Minn, A .
LIFE SCIENCES, 1997, 62 (02) :151-163
[4]  
ELBACHA RDS, CELL MOL BIOL, V45, P15
[5]   A NEW ASPECT OF THE PROTECTIVE FUNCTIONS OF THE BLOOD-BRAIN-BARRIER - ACTIVITIES OF 4 DRUG-METABOLIZING-ENZYMES IN ISOLATED RAT-BRAIN MICROVESSELS [J].
GHERSIEGEA, JF ;
MINN, A ;
SIEST, G .
LIFE SCIENCES, 1988, 42 (24) :2515-2523
[6]   ENZYME MEDIATED SUPEROXIDE RADICAL FORMATION INITIATED BY EXOGENOUS MOLECULES IN RAT-BRAIN PREPARATIONS [J].
GHERSIEGEA, JF ;
LIVERTOUX, MH ;
MINN, A ;
PERRIN, R ;
SIEST, G .
TOXICOLOGY AND APPLIED PHARMACOLOGY, 1991, 110 (01) :107-117
[7]  
Heimark Ronald L., 1993, P87
[8]   The influence of oxygen free radicals on the permeability of the monolayer of cultured brain endothelial cells [J].
Imaizumi, S ;
Kondo, T ;
Deli, MA ;
Gobbel, G ;
Joo, F ;
Epstein, CJ ;
Yoshimoto, T ;
Chan, PH .
NEUROCHEMISTRY INTERNATIONAL, 1996, 29 (02) :205-211
[9]   FREE RADICAL-INDUCED ALTERATIONS IN ENDOTHELIAL-CELL FUNCTION [J].
KOZAR, RA ;
MCKEONE, BJ ;
POWNALL, HJ .
JOURNAL OF SURGICAL RESEARCH, 1994, 56 (01) :32-36
[10]   SUPEROXIDE ANION PRODUCTION DURING MONOELECTRONIC REDUCTION OF XENOBIOTICS BY PREPARATIONS OF RAT-BRAIN CORTEX, MICROVESSELS, AND CHOROID-PLEXUS [J].
LAGRANGE, P ;
LIVERTOUX, MH ;
GRASSIOT, MC ;
MINN, A .
FREE RADICAL BIOLOGY AND MEDICINE, 1994, 17 (04) :355-359