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犬脑动脉和外周动脉中一氧化氮合酶免疫反应性神经纤维。

Nitric oxide synthase-immunoreactive nerve fibers in dog cerebral and peripheral arteries.

作者信息

Yoshida K, Okamura T, Kimura H, Bredt D S, Snyder S H, Toda N

机构信息

Department of Pharmacology, Shiga University of Medical Sciences, Ohtsu, Japan.

出版信息

Brain Res. 1993 Nov 26;629(1):67-72. doi: 10.1016/0006-8993(93)90482-3.

Abstract

Nitric oxide synthase (NOS)-immunoreactive fibers innervating the dog arterial wall were histochemically determined by the use of NOS antiserum. NOS-immunoreactive fibers were consistently found in every arterial wall examined. In a whole-mount preparation, NOS-positive fibers were detectable in the small pial artery having a diameter of about 100 microns as well as the proximal middle cerebral artery. Further detailed analyses in thin cryostat sections indicated that in middle cerebral, basilar, temporal, mesenteric and femoral arteries, fine NOS-positive fibers were detected in outer zones of the media in addition to many thicker fibers in the adventitia. However, in the coronary artery, many thick fibers were situated in the adventitia, and fine NOS-positive fibers were not found in the media. Injection of ethanol to the pterygopalatine ganglion markedly decreased or abolished the NOS immunoreactivity in nerve cells and fibers and abolished the innervation of NOS-positive fibers in the wall of middle cerebral artery of the ipsilateral side. Together with findings in our previous publications concerning the functional role of nitroxidergic nerve in the control of arterial tone, we conclude that perivascular nerves containing NOS are crucial in eliciting the neurally induced, NO-mediated arterial relaxation.

摘要

通过使用一氧化氮合酶(NOS)抗血清,对支配犬动脉壁的NOS免疫反应性纤维进行了组织化学测定。在所检查的每一个动脉壁中均持续发现了NOS免疫反应性纤维。在整装标本中,在直径约100微米的软脑膜小动脉以及大脑中动脉近端均检测到了NOS阳性纤维。在冷冻切片上进行的进一步详细分析表明,在大脑中动脉、基底动脉、颞动脉、肠系膜动脉和股动脉中,除了外膜中有许多较粗的纤维外,在中膜外层区域也检测到了细小的NOS阳性纤维。然而,在冠状动脉中,许多粗纤维位于外膜,而在中膜中未发现细小的NOS阳性纤维。向翼腭神经节注射乙醇可显著降低或消除神经细胞和纤维中的NOS免疫反应性,并消除同侧大脑中动脉壁中NOS阳性纤维的神经支配。结合我们之前关于氮氧化物能神经在动脉张力控制中的功能作用的研究结果,我们得出结论,含有NOS的血管周围神经在引发神经诱导的、NO介导的动脉舒张中起关键作用。

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