Tuberc Respir Dis > Volume 43(3); 1996 > Article
Tuberculosis and Respiratory Diseases 1996;43(3):420-433.
DOI: https://doi.org/10.4046/trd.1996.43.3.420    Published online June 1, 1996.
The Role and Localization of Nitric Oxide Synthasein Neurogenic Inflammation of the Rat Airways.
Jae Jeong Shim, Sang Yub Lee, Sang Hwa Lee, Jung Kyung Suh, Jae Youn Cho, Chul Hwan Kim, Kwang Ho In, Seo Hwa Yoo, Kyung Ho Kang
1Department of Internal Medicine, College of Medicine, Korea University, Seoul, Korea.
2Department of Anatomical Pathology, College of Medicine, Korea University, Seoul, Korea.
Abstract
BACKGROUND
There have been many debates about the effects of nitric oxide on the neurogenic inflammation. The role of nitric oxide in the neurogenic inflammation of airways will be required a better understanding of the localization and types of nitirc oxide synthase(NOS) activity in the neurogenic inflammation of airways. METHOD: To investigate the role of nitric oxide in airway neurogenic inflammation, 1) the effects of neurokinin receptor antagonist (FK224) and nitric oxide synthase inhibitor, N(omega)-nitro-L-arginine (L-NNA) on plasma extravastion were evaluated in four groups of Sprague-Dawley rats ; sham operation group(sham NANC group), electrical vagal stimulation group(NANC2 group), intravenous pretreatment groups with FK224 (1mg/kg ; FK224 group), and L-NNA(1mg/kg ; L-NNA group) 15 minutes before vagal NANC stimulation 2) NOS activity in trachea with neurogenic inflammation was localized by immunohistochemical stain. Immunohistochemical stain was performed by antibodies specific for inflammatory cells (iNOS), brain (bNOS), and endothelium (eNOS) on trachea obtained from sham NANC, NANC2, and FK224 groups. RESULTS: The results are that plasma extravsation in neurogenic inflammation of rat airways was inhibited by FK224, but enhanced by L-NNA pretreatment (P<0.05). There was significantly increased infiltration of inflammatory cells in subepithelium of neurogenic inflammatory trachea, but the reduction of subepithelial infiltration of inflammatory cells was observed after pretreatment with FK224 (P<0.05). Immunostaining with anti-iNOS antibody showed strong reactivity only in infiltrated inflammatory cells in neurogenic rat trachea, and these iNOS reactivity was reduced by pretreatment with FK224. bNOS immunoreactivity was significantly increased only in the nerves both of neurogenic inflammatory and FK224 pretreated trachea compared with sham NANC trachea(p<0.05). eNOS immunoreactivity was not significant change in endothelium in neurogenic inflammation of rat trachea. CONCLUSION: These results suggest that nitric oxide released from iNOS in infiltrated inflammatory cells has main role in neurogenic inflammation of rat trachea. The presence of bNOS immunoreactivity in the nerves indicates that nitric oxide may be released from the nerves in rat trachea with neurogenic inflammation.
Key Words: airway, neurogenic inflammation, nitric oxide synthase


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