NITRIC-OXIDE SYNTHASE-CONTAINING NEURAL PROCESSES ON LARGE CEREBRAL-ARTERIES AND CEREBRAL MICROVESSELS

被引:163
作者
IADECOLA, C
BEITZ, AJ
RENNO, W
XU, X
MAYER, B
ZHANG, F
机构
[1] GRAZ UNIV, INST PHARMACOL & TOXICOL, A-8010 GRAZ, AUSTRIA
[2] UNIV MINNESOTA, COLL VET MED, DEPT VET PATHOBIOL, ST PAUL, MN 55108 USA
关键词
CEREBRAL CIRCULATION; SPHENOPALATINE GANGLIA; CEREBRAL CAPILLARY; RAT;
D O I
10.1016/0006-8993(93)91583-E
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
We studied whether neural processes containing nitric oxide synthase (NOS) are associated with large cerebral arteries and/or intraparenchymal microvessels. The presence of NOS-positive nerves on large cerebral arteries was examined in whole-mount preparations processed for NADPH diaphorase histochemistry, a procedure that stains NOS-containing neurons. The association between NOS-containing neural processes and intracerebral microvessels was studied by electron microscopy in ultrathin brain sections reacted with antibodies against NOS. A dense perivascular plexus of NADPH diaphorase positive axons was observed in the anterior portion of the circle of Willis and its branches while in the basilar artery the innervation was less dense. Lesions of the major sources of perivascular innervation of the cerebral arteries indicated that these nerve fibers arise from the sphenopalatine ganglia. Within the brain parenchyma, NOS immunoreactivity was observed in dendrites and axonal terminals closely associated with the basal lamina of arterioles and capillaries. We conclude that NOS-containing nerves of peripheral origin innervate large cerebral arteries while NOS-containing neural processes of central origin, especially dendrites, are closely associated with cerebral arterioles and capillaries. The presence of NOS in perivascular dendrites raises the possibility that these structures are a major source of NO during neural activity. These findings, collectively, provide morphological evidence supporting the hypothesis that NOS neurons participate in the mechanisms that match neural activity to cerebral blood flow.
引用
收藏
页码:148 / 155
页数:8
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