Changes in goblet cell density in rat middle ear mucosa in acute otitis media. 1995

P Cayé-Thomasen, and A Hermansson, and M Tos, and K Prellner
Department of Otorhinolaryngology, Gentofte University Hospital of Copenhagen, Denmark.

This study was undertaken to determine quantitative histologic changes after a single episode of acute suppurative otitis media in the rat middle ear mucosa, with special reference to goblet cell density, and to determine the persistency of these changes. Drum vascularization, purulent effusion, mucosal thickness, bone and subepithelial gland formation was assessed. Twenty-five rats were inoculated with viable pneumococci type 3 through the right, bony middle ear bulla. The left bulla served as control. At days 4, 8, 16, 90, and 180 after inoculation, five rats were sacrificed on each occasion; the bullae were removed, opened, and divided into two halves, which were stained according to the periodic acid-Schiff (PAS)-alcian blue method. The stained mucosa was dissected from the bone and placed in an anise oil-colophonium chamber, for determination of interindividual median density and range of goblet cells by light microscopy. Counting was performed in 24 well-defined localities, covering the entire bulla mucosa and the drum. Areas normally containing goblet cells were extended. Goblet cell density was significantly (Mann-Whitney, p < .05) increased in almost all localities, reaching a maximum at day 16, whereafter the mucosa normalized. All changes quantitated, except drum vascularization and purulent effusion, were persisting at day 180. Cobblestone appearance of the epithelial surface and polypous mucosal prominences were found. Mucosal thickening was prominent in areas covered with flat epithelium, less so in other areas. Local differences in the degree of increased mucosal thickness were preventing intrinsic tubal occlusion. Enhanced secretory ability of the middle ear mucosa was persisting 6 months after a single episode of acute suppurative otitis media, perhaps predisposing secretory otitis media.

UI MeSH Term Description Entries
D008297 Male Males
D009092 Mucous Membrane An EPITHELIUM with MUCUS-secreting cells, such as GOBLET CELLS. It forms the lining of many body cavities, such as the DIGESTIVE TRACT, the RESPIRATORY TRACT, and the reproductive tract. Mucosa, rich in blood and lymph vessels, comprises an inner epithelium, a middle layer (lamina propria) of loose CONNECTIVE TISSUE, and an outer layer (muscularis mucosae) of SMOOTH MUSCLE CELLS that separates the mucosa from submucosa. Lamina Propria,Mucosa,Mucosal Tissue,Muscularis Mucosae,Mucous Membranes,Membrane, Mucous,Membranes, Mucous,Mucosae, Muscularis,Mucosal Tissues,Propria, Lamina,Tissue, Mucosal,Tissues, Mucosal
D010034 Otitis Media with Effusion Inflammation of the middle ear with a clear pale yellow-colored transudate. Middle Ear Effusion,Otitis Media, Secretory,Otitis Media, Serous,Ear Effusion, Middle,Ear Effusions, Middle,Effusion, Middle Ear,Effusions, Middle Ear,Middle Ear Effusions,Secretory Otitis Media,Serous Otitis Media
D002452 Cell Count The number of CELLS of a specific kind, usually measured per unit volume or area of sample. Cell Density,Cell Number,Cell Counts,Cell Densities,Cell Numbers,Count, Cell,Counts, Cell,Densities, Cell,Density, Cell,Number, Cell,Numbers, Cell
D004432 Ear, Middle The space and structures directly internal to the TYMPANIC MEMBRANE and external to the inner ear (LABYRINTH). Its major components include the AUDITORY OSSICLES and the EUSTACHIAN TUBE that connects the cavity of middle ear (tympanic cavity) to the upper part of the throat. Tympanic Cavity,Tympanum,Middle Ear,Cavities, Tympanic,Cavity, Tympanic,Ears, Middle,Middle Ears,Tympanic Cavities,Tympanums
D004847 Epithelial Cells Cells that line the inner and outer surfaces of the body by forming cellular layers (EPITHELIUM) or masses. Epithelial cells lining the SKIN; the MOUTH; the NOSE; and the ANAL CANAL derive from ectoderm; those lining the RESPIRATORY SYSTEM and the DIGESTIVE SYSTEM derive from endoderm; others (CARDIOVASCULAR SYSTEM and LYMPHATIC SYSTEM) derive from mesoderm. Epithelial cells can be classified mainly by cell shape and function into squamous, glandular and transitional epithelial cells. Adenomatous Epithelial Cells,Columnar Glandular Epithelial Cells,Cuboidal Glandular Epithelial Cells,Glandular Epithelial Cells,Squamous Cells,Squamous Epithelial Cells,Transitional Epithelial Cells,Adenomatous Epithelial Cell,Cell, Adenomatous Epithelial,Cell, Epithelial,Cell, Glandular Epithelial,Cell, Squamous,Cell, Squamous Epithelial,Cell, Transitional Epithelial,Cells, Adenomatous Epithelial,Cells, Epithelial,Cells, Glandular Epithelial,Cells, Squamous,Cells, Squamous Epithelial,Cells, Transitional Epithelial,Epithelial Cell,Epithelial Cell, Adenomatous,Epithelial Cell, Glandular,Epithelial Cell, Squamous,Epithelial Cell, Transitional,Epithelial Cells, Adenomatous,Epithelial Cells, Glandular,Epithelial Cells, Squamous,Epithelial Cells, Transitional,Glandular Epithelial Cell,Squamous Cell,Squamous Epithelial Cell,Transitional Epithelial Cell
D004848 Epithelium The layers of EPITHELIAL CELLS which cover the inner and outer surfaces of the cutaneous, mucus, and serous tissues and glands of the body. Mesothelium,Epithelial Tissue,Mesothelial Tissue,Epithelial Tissues,Mesothelial Tissues,Tissue, Epithelial,Tissue, Mesothelial,Tissues, Epithelial,Tissues, Mesothelial
D000208 Acute Disease Disease having a short and relatively severe course. Acute Diseases,Disease, Acute,Diseases, Acute
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D013997 Time Factors Elements of limited time intervals, contributing to particular results or situations. Time Series,Factor, Time,Time Factor

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