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otitis/phosphatase

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Alteration of adenoid tissue alkaline and acid phosphatase in children with secretory otitis media.

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OBJECTIVE The role of pharyngeal lymphoid tissue in etiopathogenesis of secretory otitis is not yet defined. The influence of tonsillar and adenoid mass, weight, obstruction of naspharyngeal orrifitium, bacterial reservoire or some immunological events are of scientific interest. Tissue nonspecific

Bone resorption in chronic otitis media. A light-microscopical and histochemical investigation of acid phosphatase activity.

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As a continuation of our previous work, where we have demonstrated that in chronic otitis media the picture in the submucosa-bone marginal zone is dominated by capillary proliferation and occurrence of a mononuclear, histiocyte-like cell containing lysosome-like cytoplasmatic bodies, we now report

Curcumin Inhibits NTHi-Induced MUC5AC Mucin Overproduction in Otitis Media via Upregulation of MAPK Phosphatase MKP-1.

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Otitis media (OM), characterized by the presence of mucus overproduction and excess inflammation in the middle ear, is the most common childhood infection. Nontypeable Haemophilus influenzae (NTHi) pathogen is responsible for approximately one-third of episodes of bacteria-caused OM. Current
Mucin overproduction is a hallmark of otitis media (OM). Streptococcus pneumoniae is one of the most common bacterial pathogens causing OM. Mucin MUC5AC plays an important role in mucociliary clearance of bacterial pathogens. However, if uncontrolled, excessive mucus contributes significantly to

[Magnesium and calcium contents and phosphatase activity of the blood and middle ear secretions in various forms of otitis].

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Comparison of free radicals and antioxidant enzymes in chronic otitis media with and without tympanosclerosis.

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OBJECTIVE The pathogenesis of tympanosclerosis is unclear. The study was performed to investigate the role of nitric oxide, free oxygen radicals, and antioxidants in development of tympanosclerosis in patients with chronic otitis media. METHODS A prospective study in patients with nasal

CYLD negatively regulates nontypeable Haemophilus influenzae-induced IL-8 expression via phosphatase MKP-1-dependent inhibition of ERK.

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Nontypeable Haemophilus influenzae (NTHi), a Gram-negative bacterium, is the primary cause of otitis media in children and the exacerbation of chronic obstructive pulmonary disease in adults. A hallmark of both diseases is an overactive inflammatory response, including the upregulation of
Otitis media (OM) is the most common childhood bacterial infection and the major cause of conductive hearing loss in children. Mucus overproduction is a hallmark of OM. Streptococcus pneumoniae is the most common gram-positive bacterial pathogen causing OM. Among many mucin genes, MUC5AC has been

Rosiglitazone Improves Glucocorticoid Resistance in a Sudden Sensorineural Hearing Loss by Promoting MAP Kinase Phosphatase-1 Expression.

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In this study, we investigated the role of MAP kinase phosphatase-1 (MKP-1) and rosiglitazone (RSG) in glucocorticoid resistance and glucocorticoid sensitivity, respectively, using a guinea pig model of lipopolysaccharide- (LPS-) induced sudden sensorineural hearing loss (SSHL). The pigs were

Mucosal histochemistry in secretory otitis.

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Mucosal biopsies were taken from 20 ears with secretory otitis media (glue ear) and histochemical stainings were made for comparison with data obtained from biochemical analysis of the fluids. Acid phosphatase, lactate dehydrogenase (LD), and malate dehydrogenase (MD), the activity of which in the

Hydrolase activity in acute otitis media with effusion.

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Biochemical studies of middle ear effusions (MEE) from patients with chronic or recurrent otitis media with effusion (OME) have demonstrated the presence of significant levels of certain hydrolytic and oxidative enzymes. We have examined MEE from patients with acute OME for the content of a number

Bone resorption in chronic otitis media. The role of cholesteatoma, a must or an adjunct?

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The paper contains the results of light microscopical, electron microscopical and histochemical examinations of chronic otitis media, with and without cholesteatoma, with special focus on the problems regarding bone resorption. It is demonstrated that bone resorption takes place without the presence

Certain oxidative and hydrolytic enzymes in the middle ear effusion in serous otitis media.

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Activities of various oxidative (LDH, MDH) and hydrolytic (LAP, alkaline- and acid phosphatase, and lysozyme) enzymes in serous middle ear effusions (MEE) and serum from patients with serous otitis media were studied. The ratio of enzyme activity between MEE and serum (MEE/serum) was greater than

Bone resorption in chronic otitis media.

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Bone resorption is an important aspect of chronic otitis media contributing to many complications of this disease. It is postulated that the mechanism of this localized destructive process is chemical in origin. Collagenase, lysosomal enzymes, prostaglandins, and other cell mediators are thought to

Ultrastructural evaluation of biochemical events of bone resorption in human chronic otitis media.

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Bone resorption is a significant component of chronic inflammatory ear disease. Bone is a unique tissue requiring both demineralization and collagen degradation for breakdown. Mineral removal probably occurs prior to collagen destruction. A localized change in pH may be one of the mechanisms that
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