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小鼠前庭蜗系统中的一氧化氮合酶

Nitric oxide synthase in the vestibulocochlear system of mice.

作者信息

Hess A, Bloch W, Arnhold S, Andressen C, Stennert E, Addicks K, Michel O

机构信息

Department of Oto-Rhino-Laryngology, University of Cologne, Joseph-Stelzmannstr. 9, D-50924, Cologne, Germany.

出版信息

Brain Res. 1998 Nov 30;813(1):97-102. doi: 10.1016/s0006-8993(98)00997-4.

Abstract

The exact distribution of nitric oxide-synthases (NOS) and the NO-target enzyme soluble guanylyl cyclase (sGC) in the cochlea and vestibular organ is an issue of current discussion. The existence of NOS-isoforms in the cochlea of the guinea pig has been described recently, while information about the vestibular system are still rare and non-satisfying. In order to gain more information, immunostaining was performed, using specific antibodies to NOS I-III and to sGC, on paraffin sections of complete temporal bones from mice. NOS III could be detected in cochlea and vestibular ganglion cells, in nerve fibres, in outer hair cells of the cochlear and in the sensory epithelium of the maculae. Also, the spiral ligament and the limbus epithelium was positive to NOS III. NOS I was found in the sensory epithelium of the maculae and cristae ampullares, outer and inner hair cells of the cochlea, in nerve fibres and in ganglion cells. In contrast to that NOS II could not be detected at all. Furthermore, a strong NOS I immunoreaction was displayed on the endosteum of the bone, while the periosteum was lacking of NOS. NOS detection was accompanied by immunoreactivity to sGC. The findings imply that NOS I and III-generated NO is involved in neurotransmission and other regulative processes in the vestibulocochlear system.

摘要

一氧化氮合酶(NOS)和一氧化氮靶酶可溶性鸟苷酸环化酶(sGC)在耳蜗和前庭器官中的具体分布是当前讨论的一个问题。最近已经报道了豚鼠耳蜗中存在NOS同工型,而关于前庭系统的信息仍然很少且不尽人意。为了获得更多信息,我们使用针对NOS I-III和sGC的特异性抗体,对小鼠完整颞骨的石蜡切片进行了免疫染色。在耳蜗和前庭神经节细胞、神经纤维、耳蜗外毛细胞以及黄斑的感觉上皮中可以检测到NOS III。此外,螺旋韧带和缘上皮对NOS III呈阳性反应。在黄斑和壶腹嵴的感觉上皮、耳蜗的外毛细胞和内毛细胞、神经纤维和神经节细胞中发现了NOS I。与之相反,完全未检测到NOS II。此外,在骨内膜上显示出强烈的NOS I免疫反应,而骨膜缺乏NOS。NOS检测伴随着对sGC的免疫反应性。这些发现表明,由NOS I和III产生的一氧化氮参与了前庭蜗系统中的神经传递和其他调节过程。

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