NITRIC-OXIDE SYNTHASE AND GUANYLATE-CYCLASE LEVELS IN CANINE BASILAR ARTERY AFTER SUBARACHNOID HEMORRHAGE

被引:82
作者
KASUYA, H
WEIR, BKA
NAKANE, M
POLLOCK, JS
JOHNS, L
MARTON, LS
STEFANSSON, K
机构
[1] UNIV CHICAGO,NEUROSURG SECT,CHICAGO,IL 60637
[2] UNIV CHICAGO,DEPT NEUROL,CHICAGO,IL 60637
[3] ABBOTT LABS,VASC BIOL GRP,ABBOTT PK,IL 60064
关键词
SUBARACHNOID HEMORRHAGE; SOLUBLE GUANYLATE CYCLASE; ENDOTHELIAL NITRIC OXIDE SYNTHASE; VASOSPASM; ENDOTHELIUM-DEPENDENT RELAXATION; DOG;
D O I
10.3171/jns.1995.82.2.0250
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Endothelium-dependent vasodilation may be impaired during cerebral vasospasm following subarachnoid hemorrhage. Under normal circumstances nitric oxide (NO) released by endothelial cells induces relaxation of smooth muscle by activating the soluble form of guanylate cyclase within muscle cells. In this study the levels of both endothelial NO synthase, the enzyme that produces NO, and soluble guanylate cyclase were determined in canine basilar arteries in a double-hemorrhage model using Western blot immunoassays. Thirty dogs were assigned to three groups: Group DO, control; Group D2, dogs sacrificed 2 days after cisternal injection of blood; and Group D7, dogs given double cisternal injections of blood and sacrificed 7 days after the first injection. Constriction of the basilar artery was confirmed by arterial angiography. Portions of the affected arteries or the corresponding region in control animals were solubilized for sodium dodecylsulfate-polyacrylamide gel electrophoresis and Western blotting. A specific monoclonal antibody against endothelial NO synthase was used. The extract from basilar arteries showed two bands on the blots: 135 kD, characteristic of endothelial NO synthase, and 120 kD, which may be a degradation product of the enzyme. The densitometer values of the bands were presented as percentages of DO control values. Although the total signal in the D7 group was less than that of the DO control group (D2, 97% +/- 22%; D7, 78% +/- 40%), it was not statistically significant. The proportion of the 135-kD form decreased between Groups DO and D7, but the difference was not significant. A single major band corresponding to the alpha-subunit of soluble guanylate cyclase was seen at 70 kD in the basilar artery extracts. The signals of D2 and D7 samples were 69% +/- 40% and 25% +/- 18%, respectively. There was a significant difference between D7 and DO (p < 0.001). The reduced expression of soluble guanylate cyclase may be related to the impairment of endothelium-dependent vasodilation in vasospasm.
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页码:250 / 255
页数:6
相关论文
共 29 条
[1]   PRODUCTION AND CHARACTERIZATION OF MONOCLONAL-ANTIBODIES TO SOLUBLE RAT LUNG GUANYLATE-CYCLASE [J].
BRANDWEIN, H ;
LEWICKI, J ;
MURAD, F .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA-BIOLOGICAL SCIENCES, 1981, 78 (07) :4241-4245
[2]   LOCALIZATION OF NITRIC-OXIDE SYNTHASE INDICATING A NEURAL ROLE FOR NITRIC-OXIDE [J].
BREDT, DS ;
HWANG, PM ;
SNYDER, SH .
NATURE, 1990, 347 (6295) :768-770
[3]  
BRENDT DS, 1991, NATURE, V351, P714
[4]   THE EFFECT OF CHRONIC SUBARACHNOID HEMORRHAGE ON BASAL ENDOTHELIUM-DERIVED RELAXING FACTOR ACTIVITY IN INTRATHECAL CEREBRAL-ARTERIES [J].
EDWARDS, DH ;
BYRNE, JV ;
GRIFFITH, TM .
JOURNAL OF NEUROSURGERY, 1992, 76 (05) :830-837
[5]   NITRIC-OXIDE SYNTHASES IN THE CARDIOVASCULAR-SYSTEM [J].
FORSTERMANN, U ;
POLLOCK, JS ;
NAKANE, M .
TRENDS IN CARDIOVASCULAR MEDICINE, 1993, 3 (03) :104-110
[6]  
FUJIWARA S, 1992, J NEUROSURG, V64, P445
[7]   IMPAIRMENT OF ENDOTHELIUM-DEPENDENT RELAXATION IN HUMAN BASILAR ARTERY AFTER SUBARACHNOID HEMORRHAGE [J].
HATAKE, K ;
WAKABAYASHI, I ;
KAKISHITA, E ;
HISHIDA, S .
STROKE, 1992, 23 (08) :1111-1117
[8]   PURIFICATION OF SOLUBLE GUANYLYL CYCLASE FROM BOVINE LUNG BY A NEW IMMUNOAFFINITY CHROMATOGRAPHIC METHOD [J].
HUMBERT, P ;
NIROOMAND, F ;
FISCHER, G ;
MAYER, B ;
KOESLING, D ;
HINSCH, KD ;
GAUSEPOHL, H ;
FRANK, R ;
SCHULTZ, G ;
BOHME, E .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1990, 190 (02) :273-278
[9]  
JANSSENS SP, 1992, J BIOL CHEM, V267, P14519
[10]  
KAMISAKI Y, 1986, J BIOL CHEM, V261, P7236