ELECTRICAL-FIELD STIMULATION MEDIATED RELAXATION OF RABBIT MIDDLE CEREBRAL-ARTERY - EVIDENCE OF A CHOLINERGIC ENDOTHELIUM-DEPENDENT COMPONENT

被引:28
作者
VANRIPER, DA
BEVAN, JA
机构
[1] UNIV VERMONT,COLL MED,DEPT PHARMACOL,BURLINGTON,VT 05405
[2] VERMONT CTR VASC RES,BURLINGTON,VT
关键词
CEREBRAL ARTERY; NEUROTRANSMITTER; CHOLINERGIC MECHANISMS; ENDOTHELIUM;
D O I
10.1161/01.RES.70.6.1104
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
The effects of electrical field stimulation (EFS) of rabbit middle cerebral arteries were examined using wire-mounted arterial segments. EFS of segments maintained at rest tension caused a tetrodotoxin-sensitive sympathetic contraction. In agonist-contracted segments maintained at approximately 600% of tissue maximum force, EFS caused a relaxation in two thirds of the preparations. Maximum response (mean +/- SEM) was 33 +/- 3.5% of maximal relaxation. The EFS relaxation was tetrodotoxin-sensitive but was not blocked by either chronic surgical sympathectomy or exposure to guanethidine (5-mu-M). Electron microscopy of chromaffin-fixed arterial sections showed the presence of chromaffin-positive large and small vesicles. Within the same sheath of Schwann were also a smaller number of nerve profiles containing many small clear vesicles. Removal of the vascular endothelium or treatment with atropine (10 nM) eliminated the EFS relaxation in approximately 50% of the segments and reduced the response in another 35-40%; in the remainder, relaxation was unaffected. Combined data for endothelium removal and atropine treatment showed that each caused a significant (p < 0.01) reduction in the EFS relaxation. Atropine also significantly reduced EFS relaxation in guanethidine-treated segments. There was no reduction in EFS relaxation after procedures that antagonized ATP- or substance P-mediated relaxations. These results indicate that EFS of precontracted rabbit middle cerebral artery causes a neurogenic nonadrenergic relaxation. The neuroeffector mechanism mediating this response has a predominantly cholinergic endothelium-dependent component as well as a noncholinergic endothelium-independent component.
引用
收藏
页码:1104 / 1112
页数:9
相关论文
共 44 条
[1]   ATROPINE LOWERS BLOOD-PRESSURE IN NORMOTENSIVE RATS THROUGH BLOCKADE OF ALPHA-ADRENERGIC RECEPTORS [J].
ABRAHAM, S ;
CANTOR, EH ;
SPECTOR, S .
LIFE SCIENCES, 1981, 28 (03) :315-322
[2]   NONADRENERGIC NEURAL VASODILATOR MECHANISMS [J].
BEVAN, JA ;
BRAYDEN, JE .
CIRCULATION RESEARCH, 1987, 60 (03) :309-326
[3]   FURTHER EVIDENCE FOR A MUSCARINIC COMPONENT TO THE NEURAL VASODILATOR INNERVATION OF CEREBRAL AND CRANIAL EXTRA-CEREBRAL ARTERIES OF THE CAT [J].
BEVAN, JA ;
BUGA, GM ;
JOPE, CA ;
JOPE, RS ;
MORITOKI, H .
CIRCULATION RESEARCH, 1982, 51 (04) :421-429
[4]   DIRECT METHOD FOR RECORDING TENSION CHANGES IN WALL OF SMALL BLOOD-VESSELS IN-VITRO [J].
BEVAN, JA ;
OSHER, JV .
AGENTS AND ACTIONS, 1972, 2 (05) :257-+
[5]   EVIDENCE THAT VASOACTIVE INTESTINAL POLYPEPTIDE (VIP) MEDIATES NEUROGENIC VASODILATION OF FELINE CEREBRAL-ARTERIES [J].
BRAYDEN, JE ;
BEVAN, JA .
STROKE, 1986, 17 (06) :1189-1192
[6]   NEUROGENIC MUSCARINIC VASODILATION IN THE CAT - AN EXAMPLE OF ENDOTHELIAL CELL-INDEPENDENT CHOLINERGIC RELAXATION [J].
BRAYDEN, JE ;
BEVAN, JA .
CIRCULATION RESEARCH, 1985, 56 (02) :205-211
[7]  
Brayden JE, 1986, NEURAL REGULATION BR, P371
[8]   NEUROGENIC CONTROL OF CEREBRAL-CIRCULATION [J].
BURNSTOCK, G .
CEPHALALGIA, 1985, 5 :25-33
[9]  
DUCKLES SP, 1982, J PHARMACOL EXP THER, V222, P562