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The Functional Diversity of Nitric Oxide Synthase Isoforms in Human Nose and Paranasal Sinuses: Contrasting Pathophysiological Aspects in Nasal Allergy and Chronic Rhinosinusitis

The human paranasal sinuses are the major source of intrinsic nitric oxide (NO) production in the human airway. NO plays several roles in the maintenance of physiological homeostasis and the regulation of airway inflammation through the expression of three NO synthase (NOS) isoforms. Measuring NO le...

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Autores principales: Kawasumi, Tomohiro, Takeno, Sachio, Ishikawa, Chie, Takahara, Daisuke, Taruya, Takayuki, Takemoto, Kota, Hamamoto, Takao, Ishino, Takashi, Ueda, Tsutomu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8304068/
https://www.ncbi.nlm.nih.gov/pubmed/34299181
http://dx.doi.org/10.3390/ijms22147561
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author Kawasumi, Tomohiro
Takeno, Sachio
Ishikawa, Chie
Takahara, Daisuke
Taruya, Takayuki
Takemoto, Kota
Hamamoto, Takao
Ishino, Takashi
Ueda, Tsutomu
author_facet Kawasumi, Tomohiro
Takeno, Sachio
Ishikawa, Chie
Takahara, Daisuke
Taruya, Takayuki
Takemoto, Kota
Hamamoto, Takao
Ishino, Takashi
Ueda, Tsutomu
author_sort Kawasumi, Tomohiro
collection PubMed
description The human paranasal sinuses are the major source of intrinsic nitric oxide (NO) production in the human airway. NO plays several roles in the maintenance of physiological homeostasis and the regulation of airway inflammation through the expression of three NO synthase (NOS) isoforms. Measuring NO levels can contribute to the diagnosis and assessment of allergic rhinitis (AR) and chronic rhinosinusitis (CRS). In symptomatic AR patients, pro-inflammatory cytokines upregulate the expression of inducible NOS (iNOS) in the inferior turbinate. Excessive amounts of NO cause oxidative damage to cellular components, leading to the deposition of cytotoxic substances. CRS phenotype and endotype classifications have provided insights into modern treatment strategies. Analyses of the production of sinus NO and its metabolites revealed pathobiological diversity that can be exploited for useful biomarkers. Measuring nasal NO based on different NOS activities is a potent tool for specific interventions targeting molecular pathways underlying CRS endotype-specific inflammation. We provide a comprehensive review of the functional diversity of NOS isoforms in the human sinonasal system in relation to these two major nasal disorders’ pathologies. The regulatory mechanisms of NOS expression associated with the substrate bioavailability indicate the involvement of both type 1 and type 2 immune responses.
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spelling pubmed-83040682021-07-25 The Functional Diversity of Nitric Oxide Synthase Isoforms in Human Nose and Paranasal Sinuses: Contrasting Pathophysiological Aspects in Nasal Allergy and Chronic Rhinosinusitis Kawasumi, Tomohiro Takeno, Sachio Ishikawa, Chie Takahara, Daisuke Taruya, Takayuki Takemoto, Kota Hamamoto, Takao Ishino, Takashi Ueda, Tsutomu Int J Mol Sci Review The human paranasal sinuses are the major source of intrinsic nitric oxide (NO) production in the human airway. NO plays several roles in the maintenance of physiological homeostasis and the regulation of airway inflammation through the expression of three NO synthase (NOS) isoforms. Measuring NO levels can contribute to the diagnosis and assessment of allergic rhinitis (AR) and chronic rhinosinusitis (CRS). In symptomatic AR patients, pro-inflammatory cytokines upregulate the expression of inducible NOS (iNOS) in the inferior turbinate. Excessive amounts of NO cause oxidative damage to cellular components, leading to the deposition of cytotoxic substances. CRS phenotype and endotype classifications have provided insights into modern treatment strategies. Analyses of the production of sinus NO and its metabolites revealed pathobiological diversity that can be exploited for useful biomarkers. Measuring nasal NO based on different NOS activities is a potent tool for specific interventions targeting molecular pathways underlying CRS endotype-specific inflammation. We provide a comprehensive review of the functional diversity of NOS isoforms in the human sinonasal system in relation to these two major nasal disorders’ pathologies. The regulatory mechanisms of NOS expression associated with the substrate bioavailability indicate the involvement of both type 1 and type 2 immune responses. MDPI 2021-07-15 /pmc/articles/PMC8304068/ /pubmed/34299181 http://dx.doi.org/10.3390/ijms22147561 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Review
Kawasumi, Tomohiro
Takeno, Sachio
Ishikawa, Chie
Takahara, Daisuke
Taruya, Takayuki
Takemoto, Kota
Hamamoto, Takao
Ishino, Takashi
Ueda, Tsutomu
The Functional Diversity of Nitric Oxide Synthase Isoforms in Human Nose and Paranasal Sinuses: Contrasting Pathophysiological Aspects in Nasal Allergy and Chronic Rhinosinusitis
title The Functional Diversity of Nitric Oxide Synthase Isoforms in Human Nose and Paranasal Sinuses: Contrasting Pathophysiological Aspects in Nasal Allergy and Chronic Rhinosinusitis
title_full The Functional Diversity of Nitric Oxide Synthase Isoforms in Human Nose and Paranasal Sinuses: Contrasting Pathophysiological Aspects in Nasal Allergy and Chronic Rhinosinusitis
title_fullStr The Functional Diversity of Nitric Oxide Synthase Isoforms in Human Nose and Paranasal Sinuses: Contrasting Pathophysiological Aspects in Nasal Allergy and Chronic Rhinosinusitis
title_full_unstemmed The Functional Diversity of Nitric Oxide Synthase Isoforms in Human Nose and Paranasal Sinuses: Contrasting Pathophysiological Aspects in Nasal Allergy and Chronic Rhinosinusitis
title_short The Functional Diversity of Nitric Oxide Synthase Isoforms in Human Nose and Paranasal Sinuses: Contrasting Pathophysiological Aspects in Nasal Allergy and Chronic Rhinosinusitis
title_sort functional diversity of nitric oxide synthase isoforms in human nose and paranasal sinuses: contrasting pathophysiological aspects in nasal allergy and chronic rhinosinusitis
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8304068/
https://www.ncbi.nlm.nih.gov/pubmed/34299181
http://dx.doi.org/10.3390/ijms22147561
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