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sinusitis/protease

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ČlanciKlinička ispitivanjaPatenti
Stranica 1 iz 106 rezultatima

Development of Aspergillus protease with ovalbumin-induced allergic chronic rhinosinusitis model in the mouse.

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BACKGROUND Chronic rhinosinusitis (CRS) is a multifactorial inflammatory disease. Particularly, eosinophilic CRS is often recalcitrant to treatment, so an appropriate animal model is required to evaluate the pathogenesis of, and to develop therapies for, recalcitrant eosinophilic CRS. This study

Emerging Role of Proteases in the Pathogenesis of Chronic Rhinosinusitis with Nasal Polyps.

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Chronic rhinosinusitis with nasal polyps (CRSwNP) is a heterogeneous upper airway disease with multiple etiologies. Clinically, CRSwNP can be classified into either eosinophilic or non-eosinophilic subtypes. The eosinophilic phenotype of CRSwNP is widely thought to be highly associated with

The expression of protease-activated receptors in chronic rhinosinusitis.

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BACKGROUND A recent study suggested that protease-activated receptors (PARs) are involved in allergic respiratory diseases, such as asthma. Chronic rhinosinusitis (CRS) is one of the most common chronic airway diseases, but little is understood about its pathogenesis. The purpose of this study was

Lysosomal proteases and protease inhibitors in nasal allergy and non-atopic sinusitis.

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Patterns of protease activity and levels of protease inhibitors were analyzed in both nasal secretions and tissue extracts from patients with nasal allergy and non-atopic sinusitis to investigate the role of proteases in the inflammatory reaction. Protease activity was measured using specific

Analysis of differential expression of protease-activated receptors in patients with allergic fungal rhinosinusitis.

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UNASSIGNED Ever since its characterization in the 1970s, allergic fungal rhinosinusitis (AFRS) has been the subject of much controversy, especially regarding its pathogenesis. In this study, we analyzed the differential expression of genes that encode protease-activated receptors (PAR) in patients
One subtype of chronic rhinosinusitis with nasal polyps (CRSwNP) is characterized by the development of a T-helper type 2 (Th2) response and eosinophilic infiltration. Here, we aimed to establish an eosinophilic CRSwNP murine model, which would be essential to understand the underlying pathogenesis

Expression of protease-activated receptors in allergic fungal rhinosinusitis.

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BACKGROUND The etiology of the intense inflammatory response showed by patients with allergic fungal rhinosinusitis (AFRS) remains a mystery. Potential sources of this inflammation may include fungal proteases. Protease-activated receptors (PARs) are components of the innate immune response that are

Endogenous Protease Inhibitors in Airway Epithelial Cells Contribute to Eosinophilic Chronic Rhinosinusitis.

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Cystatin A and SPINK5 are endogenous protease inhibitors (EPIs) that may play key roles in epithelial barrier function. To investigate the roles of EPIs in the pathogenesis of chronic rhinosinusitis (CRS). We examined the expression of cystatin A and SPINK5 in the nasal epithelial cells of patients
While various microorganisms have been recovered from patients with chronic rhinosinusitis, the inflammatory impact of virulence factors, in particular proteases from Staphylococcus aureus and coagulase negative staphylococci on the nasal epithelium, has not yet been investigated. Expression of CXC

Tissue proteases convert CCL23 into potent monocyte chemoattractants in patients with chronic rhinosinusitis.

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Chronic sinusitis and alpha1-antitrypsin deficiency: potential role for protease in rhinosinusitis?

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Epithelial Cell-Derived Cytokines Contribute to the Pathophysiology of Eosinophilic Chronic Rhinosinusitis.

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The epithelial cell-derived cytokines, thymic stromal lymphopoietin (TSLP), interleukin (IL)-25, and IL-33 induce T helper 2 type immune responses. In the present study, we investigate the role of these cytokines in the pathophysiology of eosinophilic chronic rhinosinusitis (ECRS). Nasal tissue

Inflammatory effect of environmental proteases on airway mucosa.

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Proteases--both endogenous proteases from the coagulation cascade, mast cells, and respiratory epithelial trypsin, and exogenous proteases from parasites, insects, mites, molds, pollens, and other aeroallergens--stimulate a tissue response that includes attraction and activation of eosinophils and
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