Korean J Anat.  2000 Aug;33(4):487-495.

Immunohistochemical study of nitric oxide synthase in salivary glands

Affiliations
  • 1Dental Science Research Institute, College of Dentistry, Chonnam National University, Korea.
  • 2Department of Anatomy, School of Medicine, Chonnam National University, Korea.

Abstract

Endogenous nitric oxide (NO) has been known to regulate the salivary secretion and glandular blood flow. However, nitric oxide synthase (NOS) responsible for NO synthesis has not been well studied in salivary glands. The present study was aimed to investigate the distribution of nitric oxide synthase isoforms (endothelial, neuronal, and inducible NOS). Immunohistochemistry, using monoclonal mouse anti-endothelial NOS, anti-neuronal NOS, and anti-inducible NOS, was performed in 3 major salivary glands of the rat. Endothelial NOS (eNOS)-positive immunoreactivity was observed in arterial endothelium, striated duct, granular convoluted duct of the submandibular gland, intercalated duct, and mucous acinar cells of the sublingual gland. eNOS-positive immunoreactivity was most prominent in the arterial endothelial layer and that of the striated and granular convoluted duct was well concentrated in columnar epithelial layer. However, eNOS-positive immunoreactivity of the intercalated duct and mucous acinus was weak. Neural NOS (nNOS)-positive immunoreactivity was seen in submandibular ganglion, autonomic postganglionic fiber, striated duct, granular convoluted duct, and intercalated duct. nNOS-positive immunoreactivity of the submandibular ganglion and autonomic postganglionic fiber was most prominent and that of the ductal system was well concentrated in epithelial layer. eNOS or nNOS-positive immunoreactivity was not detected either in excretory ducts or in serous acinar cell. Inducible NOS-positive immunoreactivity was not seen. There results reveal the presence of eNOS and nNOS in the salivary gland, which may be related with regulation of the glandular secretion and blood flow.

Keyword

Nitric oxide synthase; Immunohistochemistry; Salivary gland

MeSH Terms

Acinar Cells
Animals
Endothelium
Ganglia, Autonomic
Ganglion Cysts
Immunohistochemistry
Mice
Neurons
Nitric Oxide Synthase*
Nitric Oxide*
Protein Isoforms
Rats
Salivary Glands*
Sublingual Gland
Submandibular Gland
Nitric Oxide
Nitric Oxide Synthase
Protein Isoforms
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