Hydroxyl radical formation during inhalation anesthesia in the reperfused working rat heart

被引:17
作者
Nakamura, T [1 ]
Kashimoto, S [1 ]
Oguchi, T [1 ]
Kumazawa, T [1 ]
机构
[1] Yamanashi Med Univ, Dept Anesthesiol, Tamaho, Yamanashi 4093898, Japan
来源
CANADIAN JOURNAL OF ANAESTHESIA-JOURNAL CANADIEN D ANESTHESIE | 1999年 / 46卷 / 05期
关键词
D O I
10.1007/BF03012948
中图分类号
R614 [麻醉学];
学科分类号
100217 ;
摘要
Purpose: To determine whether isoflurane, sevoflurane and halothane influenced hydroxyl radical production in the ischemic rat heart. Methods: Twenty-four male Wister rats were divided into four groups; control(C), isoflurane 1.4% (I), sevoflurane 2.5% (S) and halothane 1% (H). The hearts were perfused with modified Krebs-Henseleit bicarbonate buffer by a working heart model for 10 min. Then, whole heart ischemia was induced by severely restricting coronary perfusion for 15 min. Reperfusion of the hearts after this ischemic period lasted for 20 min. The coronary effluent was collected before and during ischemia and at 1,5, 10,20 min after reperfusion. At the end of reperfusion hearts were removed and prepared for measurement. Hydroxyl radicals were identified by their reaction with salicylic acid to yield dihydroxybenzoic acids(DHBAs). Results: Before and after ischemia, there were no differences in coronary flow and heart rate among the four groups, but cardiac output and LV dP/dt maximum in the anesthetic groups were lower than in the control group. Hydroxyl radical products in the heart were significantly lower in the I group than the other groups (e.g;C vs I, 278.1 +/- 24.3 vs 219.3 +/- 14.4 mu M.g(-1), P < 0.05). The concentrations of DHBAs in the coronary effluent at some points in the I and H groups were less than in the C and S groups. Conclusion: These results indicate that isoflurane and halothane (to a lesser extent), reduce hydroxyl radical production in the ischemic heart, but sevoflurane does not.
引用
收藏
页码:470 / 475
页数:6
相关论文
共 22 条
[1]   THE RELATIONSHIP BETWEEN OXYGEN RADICAL GENERATION AND IMPAIRMENT OF MYOCARDIAL ENERGY-METABOLISM FOLLOWING POSTISCHEMIC REPERFUSION [J].
AMBROSIO, G ;
ZWEIER, JL ;
FLAHERTY, JT .
JOURNAL OF MOLECULAR AND CELLULAR CARDIOLOGY, 1991, 23 (12) :1359-1374
[2]   EFFECTS OF SEVOFLURANE AND ISOFLURANE ON CARDIAC AND CORONARY DYNAMICS IN CHRONICALLY INSTRUMENTED DOGS [J].
BERNARD, JM ;
WOUTERS, PF ;
DOURSOUT, MF ;
FLORENCE, B ;
CHELLY, JE ;
MERIN, RG .
ANESTHESIOLOGY, 1990, 72 (04) :659-662
[3]  
COETZEE A, 1993, ANESTH ANALG, V76, P602
[4]  
COETZEE A, 1991, ANESTH ANALG, V73, P711
[5]  
CONZEN PF, 1992, ANESTH ANALG, V74, P79
[6]   RENAL EFFECTS AND METABOLISM OF SEVOFLURANE IN FISCHER 344 RATS - INVIVO AND INVITRO COMPARISON WITH METHOXYFLURANE [J].
COOK, TL ;
BEPPU, WJ ;
HITT, BA ;
KOSEK, JC ;
MAZZE, RI .
ANESTHESIOLOGY, 1975, 43 (01) :70-77
[7]   Volatile anesthetics protect the ischemic rabbit myocardium from infarction [J].
Cope, DK ;
Impastato, WK ;
Cohen, MV ;
Downey, JM .
ANESTHESIOLOGY, 1997, 86 (03) :699-709
[8]  
FLOYD R A, 1986, Journal of Free Radicals in Biology and Medicine, V2, P13, DOI 10.1016/0748-5514(86)90118-2
[9]   SENSITIVE ASSAY OF HYDROXYL FREE-RADICAL FORMATION UTILIZING HIGH-PRESSURE LIQUID-CHROMATOGRAPHY WITH ELECTROCHEMICAL DETECTION OF PHENOL AND SALICYLATE HYDROXYLATION PRODUCTS [J].
FLOYD, RA ;
WATSON, JJ ;
WONG, PK .
JOURNAL OF BIOCHEMICAL AND BIOPHYSICAL METHODS, 1984, 10 (3-4) :221-235
[10]   Halothane prevents postischemic production of hydroxyl radicals in the canine heart [J].
Glantz, L ;
Ginosar, Y ;
Chevion, M ;
Gozal, Y ;
Elami, A ;
Navot, N ;
Kitrossky, N ;
Drenger, B .
ANESTHESIOLOGY, 1997, 86 (02) :440-447