Postischemic hypothermia inhibits the generation of hydroxyl radical following transient forebrain ischemia in rats

被引:53
作者
Horiguchi, T
Shimizu, K
Ogino, M
Suga, S
Inamasu, J
Kawase, T
机构
[1] Keio Univ, Sch Med, Dept Neurosurg, Tokyo 160, Japan
[2] Tachikawa Kyousai Hosp, Dept Neurosurg, Tokyo, Japan
[3] Dokkyo Univ, Sch Med, Dept Neurosurg, Tochigi, Japan
[4] Ichikawa Gen Hosp, Tokyo Dent Coll, Dept Neurosurg, Chiba, Japan
[5] Natl Tokyo Med Ctr, Dept Neurosurg, Tokyo, Japan
关键词
delayed neuronal death; free radical; neuroprotection; reperfusion; temperature; xanthine;
D O I
10.1089/089771503765355577
中图分类号
R4 [临床医学];
学科分类号
1002 ; 100602 ;
摘要
A small reduction of body temperature during reperfusion following cerebral ischemia has been known to ameliorate neuronal injury. However, the mechanisms underlying postischemic hypothermia-induced neuroprotection are poorly understood. The burst of reactive oxygen species (ROS) formation that occurs during reperfusion has been documented to be involved in ischemic neuronal degeneration. In this study, we investigated the effect of postischemic hypothermia on ROS production following transient forebrain ischemia using an in vivo microdialysis technique. Forebrain ischemia was induced by bilateral carotid artery occlusion combined with hemorrhagic hypotension for 20 min in male Wistar rats. The body temperature was kept at 37degreesC during ischemia and controlled at either 32degreesC or 37degreesC after reperfusion. The amount of hydroxyl radical produced in striatum was evaluated by measurement of 2,3- and 2,5-dihydroxybenzoic acid (DHBA), which is generated by salicylate hydroxylation. We also measured the extracellular concentration of xanthine, while determining striatal blood flow by the hydrogen clearance technique. In animals whose postischemic body temperature was maintained at 37degreesC, the levels of 2,3- and 2,5-DHBA significantly increased after reperfusion. The peak levels of 2,3- and 2,5- DHBA were 2.9-fold and 2.7-fold increased above the corresponding baseline values, respectively. Postischemic hypothermia completely inhibited the hydroxyl radical formation. Likewise, xanthine formation was also inhibited by postischemic hypothermia. In contrast, striatal cerebral blood flow was not altered by temperature modulation during reperfusion. These results suggest that inhibition of ROS production accompanied with suppression of xanthine formation is implicated in the neuroprotection of postischemic hypothermia.
引用
收藏
页码:511 / 520
页数:10
相关论文
共 51 条
[1]   THE EFFECTS OF HYPOTHERMIA ON NEUTROPHIL FUNCTION-INVITRO [J].
AKRIOTIS, V ;
BIGGAR, WD .
JOURNAL OF LEUKOCYTE BIOLOGY, 1985, 37 (01) :51-61
[2]   THE USE OF SALICYLATE HYDROXYLATION TO DETECT HYDROXYL RADICAL GENERATION IN ISCHEMIC AND TRAUMATIC BRAIN INJURY - REVERSAL BY TIRILAZAD MESYLATE (U-74006F) [J].
ALTHAUS, JS ;
ANDRUS, PK ;
WILLIAMS, CM ;
VONVOIGTLANDER, PF ;
CAZERS, AR ;
HALL, ED .
MOLECULAR AND CHEMICAL NEUROPATHOLOGY, 1993, 20 (02) :147-162
[3]  
ANDINE P, 1993, BRIT J PHARMACOL, V100, P814
[4]   Xanthine oxidase-derived superoxide causes reoxygenation injury of ischemic cerebral endothelial cells [J].
Beetsch, JW ;
Park, TS ;
Dugan, LL ;
Shah, AR ;
Gidday, JM .
BRAIN RESEARCH, 1998, 786 (1-2) :89-95
[5]   EFFECT OF MILD HYPOTHERMIA ON ISCHEMIA-INDUCED RELEASE OF NEUROTRANSMITTERS AND FREE FATTY-ACIDS IN RAT-BRAIN [J].
BUSTO, R ;
GLOBUS, MY ;
DIETRICH, WD ;
MARTINEZ, E ;
VALDES, I ;
GINSBERG, MD .
STROKE, 1989, 20 (07) :904-910
[6]   SMALL DIFFERENCES IN INTRAISCHEMIC BRAIN TEMPERATURE CRITICALLY DETERMINE THE EXTENT OF ISCHEMIC NEURONAL INJURY [J].
BUSTO, R ;
DIETRICH, WD ;
GLOBUS, MYT ;
VALDES, I ;
SCHEINBERG, P ;
GINSBERG, MD .
JOURNAL OF CEREBRAL BLOOD FLOW AND METABOLISM, 1987, 7 (06) :729-738
[7]   POSTISCHEMIC MODERATE HYPOTHERMIA INHIBITS CA1 HIPPOCAMPAL ISCHEMIC NEURONAL INJURY [J].
BUSTO, R ;
DIETRICH, WD ;
GLOBUS, MYT ;
GINSBERG, MD .
NEUROSCIENCE LETTERS, 1989, 101 (03) :299-304
[8]   Reactive oxygen radicals in signaling and damage in the ischemic brain [J].
Chan, PH .
JOURNAL OF CEREBRAL BLOOD FLOW AND METABOLISM, 2001, 21 (01) :2-14
[9]   TEMPERATURE MODULATION OF CEREBRAL DEPOLARIZATION DURING FOCAL CEREBRAL-ISCHEMIA IN RATS - CORRELATION WITH ISCHEMIC-INJURY [J].
CHEN, Q ;
CHOPP, M ;
BODZIN, G ;
CHEN, H .
JOURNAL OF CEREBRAL BLOOD FLOW AND METABOLISM, 1993, 13 (03) :389-394
[10]   INTRACRANIAL MICRODIALYSIS OF SALICYLIC-ACID TO DETECT HYDROXYL RADICAL GENERATION THROUGH DOPAMINE AUTOOXIDATION IN THE CAUDATE-NUCLEUS - EFFECTS OF MPP [J].
CHIUEH, CC ;
KRISHNA, G ;
TULSI, P ;
OBATA, T ;
LANG, K ;
HUANG, SJ ;
MURPHY, DL .
FREE RADICAL BIOLOGY AND MEDICINE, 1992, 13 (05) :581-583