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大鼠阴茎勃起组织中的神经型和内皮型一氧化氮合酶活性

Neural and endothelial nitric oxide synthase activity in rat penile erectile tissue.

作者信息

Dail W G, Barba V, Leyba L, Galindo R

机构信息

Department of Anatomy, University of New Mexico School of Medicine, Albuquerque, NM 87131, USA.

出版信息

Cell Tissue Res. 1995 Oct;282(1):109-16. doi: 10.1007/BF00319137.

Abstract

NADPH-diaphorase (NADPH-D) activity and immunoreactivity for neural and endothelial nitric oxide synthase (nNOS and eNOS, respectively) were used to investigate nitric oxide (NO) regulation of penile vasculature. Both the histochemical and immunohistochemical techniques for NOS showed that all smooth muscles regions of the penis (dorsal penile artery and vein, deep penile vessels, and cavernosal muscles) were richly innervated. The endothelium of penile arteries, deep dorsal penile vein, and select veins in the crura and shaft were also stained for NADPH-D and eNOS. However, the endothelium of cavernous sinuses was unstained by both techniques. Fewer fibers were seen in the glans penis, those present being associated with small blood vessels and large nerve bundles near the trabecular walls. All penile neurons in the pelvic plexus, located by retrograde transport of a dye placed in the corpora cavernosa penis, were stained by the NADPH-D method. Essentially similar results were obtained with an antibody to nNOS. These data suggest that penile parasympathetic neurons comprise a uniform population, as all seem capable of forming nitric oxide. However, in contrast to the endothelium of penile vessels, the endothelium lining the cavernosal spaces may not be capable of nitric oxide synthesis.

摘要

利用烟酰胺腺嘌呤二核苷酸磷酸-黄递酶(NADPH-D)活性以及针对神经型和内皮型一氧化氮合酶(分别为nNOS和eNOS)的免疫反应性,来研究一氧化氮(NO)对阴茎血管系统的调节作用。用于一氧化氮合酶的组织化学和免疫组织化学技术均显示,阴茎的所有平滑肌区域(阴茎背动脉和静脉、阴茎深部血管以及海绵体肌)均有丰富的神经支配。阴茎动脉、阴茎背深静脉以及阴茎脚和阴茎体部某些静脉的内皮细胞也呈NADPH-D和eNOS染色阳性。然而,两种技术均未使海绵窦的内皮细胞染色。在阴茎头可见较少的纤维,这些纤维与小梁壁附近的小血管和大神经束相关。通过将染料逆行注入阴茎海绵体定位的盆腔丛中的所有阴茎神经元,均经NADPH-D方法染色。用抗nNOS抗体获得了基本相似的结果。这些数据表明,阴茎副交感神经元构成一个统一的群体,因为所有神经元似乎都能够产生一氧化氮。然而,与阴茎血管的内皮不同,海绵体腔隙内衬的内皮可能无法合成一氧化氮。

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