Mechanisms of bradykinin-induced cerebral vasodilatation in rats - Evidence that reactive oxygen species activate K+ channels

被引:145
作者
Sobey, CG
Heistad, DD
Faraci, FM
机构
[1] UNIV IOWA,COLL MED,DEPT INTERNAL MED,CTR CARDIOVASC,IOWA CITY,IA 52242
[2] UNIV IOWA,COLL MED,DEPT PHARMACOL,CTR CARDIOVASC,IOWA CITY,IA 52242
关键词
bradykinin; cerebral arteries; vasodilation rats;
D O I
10.1161/01.STR.28.11.2290
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Background and Purpose Relatively little is know regarding mechanisms by which reactive oxygen species produce dilatation of cerebral arterioles. The goal of this study was to test the hypothesis that vasodilator responses of cerebral arterioles to bradykinin, which produces endogenous generation of reactive oxygen species, involve activation of calcium-dependent potassium channels. Methods We used a cranial window in anesthetized rats to examine effects of catalase (which degrades hydrogen peroxide) on responses to bradykinin. In addition, we examined effects of tetraethylammonium (TEA) and iberiotoxin, inhibitors of calcium-dependent potassium channels, on responses of cerebral arterioles to hydrogen peroxide, bradykinin, and papaverine. Results In cerebral arterioles (baseline diameter=40+/-1 mu m) (mean+/-SE), hydrogen peroxide (10 and 100 mu mol/L) produced concentration-dependent dilatation. TEA (1 mmol/L), an inhibitor of calcium-dependent potassium channels, produced marked inhibition of vasodilatation in response to hydrogen peroxide. For example, 100 mu mol/L hydrogen peroxide dilated arterioles by 13+/-2% in the absence and 4+/-1% (P<.05 versus control) in the presence of TEA. Bradykinin (10 nmol/L to 1 mu mol/L) also produced concentration-dependent dilatation of cerebral arterioles that was inhibited completely by catalase (100 U/mL). TEA or iberiotoxin markedly inhibited vasodilatation in response to bradykinin. For example, 100 nmol/L bradykinin dilated arterioles by 21+/-3% in the absence and 2+/-2% (P<.05 vs control) in the presence of iberiotoxin (50 nmol/L). Conclusions These findings suggest that dilatation of cerebral arterioles in the rat in response to hydrogen peroxide, or hydrogen peroxide produced endogenously in response to bradykinin, is mediated by activation of calcium-dependent potassium channels. Thus, activation of potassium channels may be a major mechanism of dilatation in response to reactive oxygen species in the cerebral microcirculation.
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页码:2290 / 2294
页数:5
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