HYPERCAPNIC VASODILATATION IN ISOLATED RAT BASILAR ARTERIES IS EXERTED VIA LOW PH AND DOES NOT INVOLVE NITRIC-OXIDE SYNTHASE STIMULATION OR CYCLIC-GMP PRODUCTION

被引:43
作者
YOU, JP
WANG, Q
ZHANG, W
JANSENOLESEN, I
PAULSON, OB
LASSEN, NA
EDVINSSON, L
机构
[1] MALMO GEN HOSP,DEPT EXPTL RES,MALMO,SWEDEN
[2] BISPEBJERG HOSP,DEPT CLIN PHYSIOL NUCL MED,COPENHAGEN,DENMARK
[3] RIGSHOSP,DEPT NEUROL,COPENHAGEN,DENMARK
来源
ACTA PHYSIOLOGICA SCANDINAVICA | 1994年 / 152卷 / 04期
关键词
BASILAR ARTERY; ENDOTHELIUM; GUANYLYL CYCLASE; HYPERCAPNIA; IN VITRO; METHYLENE BLUE; NITRO-L-ARGININE; PH; RAT; VASOMOTOR RESPONSE;
D O I
10.1111/j.1748-1716.1994.tb09821.x
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
The relaxant effect of hypercapnia (15% CO2) was studied in isolated circular segments of rat basilar arteries with intact endothelium. The nitric oxide synthase inhibitor nitro-L-arginine (L-NOARG) and the cytosolic guanylate cyclase inhibitor methylene blue (MB), significantly reduced this relaxation by 54% and 70%, respectively. The effect of L-NOARG was completely reversed by L-arginine. Blockade of nerve excitation with tetrodotoxin (TTX) had no affect on the 15% CO2 elicited vasodilatation. Measurements of cGMP in vessel segments showed no significant increase in cGMP content in response to hypercapnia. L-NOARG and MB, but not TTX, significantly reduced the basal cGMP content in cerebral vessels. Adding 1.5% halothane to the incubation medium did not result in a significant increase in cGMP content. Lowering the pH by cumulative application of 0.12 M HCl resulted in relaxation identical to that obtained by lowering the pH with 15% CO2. In vessel segments in which the endothelium had been removed beforehand 15% CO2 induced relaxation that was not different from that seen in vessels with intact endothelium. L-NOARG had no affect in endothelium denuded vessels. The results suggest that high CO2 elicits vasodilatation of isolated rat basilar arteries by a mechanism independent of nitric oxide synthase (NOS) activity. The markedly reduced basal cGMP levels in cerebral vessels by L-NOARG and MB suggest that there exists a basal NO formation in the cerebral vessel wall.
引用
收藏
页码:391 / 397
页数:7
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