Cargando…

Virgin Coconut Oil Supplementation Prevents Airway Hyperreactivity of Guinea Pigs with Chronic Allergic Lung Inflammation by Antioxidant Mechanism

Asthma is a chronic inflammatory disease of the airways characterized by immune cell infiltrates, bronchial hyperresponsiveness, and declining lung function. Thus, the possible effects of virgin coconut oil on a chronic allergic lung inflammation model were evaluated. Morphology of lung and airway t...

Descripción completa

Detalles Bibliográficos
Autores principales: Vasconcelos, Luiz Henrique C., Silva, Maria da Conceição C., Costa, Alana C., de Oliveira, Giuliana A., de Souza, Iara Leão Luna, Righetti, Renato F., Queiroga, Fernando R., Cardoso, Glêbia A., Silva, Alexandre S., da Silva, Patrícia M., Vieira, Giciane C., Tibério, Iolanda de F. L. C., Madruga, Marta S., Cavalcante, Fabiana de A., da Silva, Bagnólia A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7008286/
https://www.ncbi.nlm.nih.gov/pubmed/32089769
http://dx.doi.org/10.1155/2020/5148503
_version_ 1783495453531176960
author Vasconcelos, Luiz Henrique C.
Silva, Maria da Conceição C.
Costa, Alana C.
de Oliveira, Giuliana A.
de Souza, Iara Leão Luna
Righetti, Renato F.
Queiroga, Fernando R.
Cardoso, Glêbia A.
Silva, Alexandre S.
da Silva, Patrícia M.
Vieira, Giciane C.
Tibério, Iolanda de F. L. C.
Madruga, Marta S.
Cavalcante, Fabiana de A.
da Silva, Bagnólia A.
author_facet Vasconcelos, Luiz Henrique C.
Silva, Maria da Conceição C.
Costa, Alana C.
de Oliveira, Giuliana A.
de Souza, Iara Leão Luna
Righetti, Renato F.
Queiroga, Fernando R.
Cardoso, Glêbia A.
Silva, Alexandre S.
da Silva, Patrícia M.
Vieira, Giciane C.
Tibério, Iolanda de F. L. C.
Madruga, Marta S.
Cavalcante, Fabiana de A.
da Silva, Bagnólia A.
author_sort Vasconcelos, Luiz Henrique C.
collection PubMed
description Asthma is a chronic inflammatory disease of the airways characterized by immune cell infiltrates, bronchial hyperresponsiveness, and declining lung function. Thus, the possible effects of virgin coconut oil on a chronic allergic lung inflammation model were evaluated. Morphology of lung and airway tissue exhibited peribronchial inflammatory infiltrate, epithelial hyperplasia, and smooth muscle thickening in guinea pigs submitted to ovalbumin sensitization, which were prevented by virgin coconut oil supplementation. Additionally, in animals with lung inflammation, trachea contracted in response to ovalbumin administration, showed a greater contractile response to carbachol (CCh) and histamine, and these responses were prevented by the virgin coconut oil supplementation. Apocynin, a NADPH oxidase inhibitor, did not reduce the potency of CCh, whereas tempol, a superoxide dismutase mimetic, reduced potency only in nonsensitized animals. Catalase reduced the CCh potency in nonsensitized animals and animals sensitized and treated with coconut oil, indicating the participation of superoxide anion and hydrogen peroxide in the hypercontractility, which was prevented by virgin coconut oil. In the presence of L-NAME, a nitric oxide synthase (NOS) inhibitor, the CCh curve remained unchanged in nonsensitized animals but had increased efficacy and potency in sensitized animals, indicating an inhibition of endothelial NOS but ineffective in inhibiting inducible NOS. In animals sensitized and treated with coconut oil, the CCh curve was not altered, indicating a reduction in the release of NO by inducible NOS. These data were confirmed by peribronchiolar expression analysis of iNOS. The antioxidant capacity was reduced in the lungs of animals with chronic allergic lung inflammation, which was reversed by the coconut oil, and confirmed by analysis of peribronchiolar 8-iso-PGF2α content. Therefore, the virgin coconut oil supplementation reverses peribronchial inflammatory infiltrate, epithelial hyperplasia, smooth muscle thickening, and hypercontractility through oxidative stress and its interactions with the NO pathway.
format Online
Article
Text
id pubmed-7008286
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Hindawi
record_format MEDLINE/PubMed
spelling pubmed-70082862020-02-23 Virgin Coconut Oil Supplementation Prevents Airway Hyperreactivity of Guinea Pigs with Chronic Allergic Lung Inflammation by Antioxidant Mechanism Vasconcelos, Luiz Henrique C. Silva, Maria da Conceição C. Costa, Alana C. de Oliveira, Giuliana A. de Souza, Iara Leão Luna Righetti, Renato F. Queiroga, Fernando R. Cardoso, Glêbia A. Silva, Alexandre S. da Silva, Patrícia M. Vieira, Giciane C. Tibério, Iolanda de F. L. C. Madruga, Marta S. Cavalcante, Fabiana de A. da Silva, Bagnólia A. Oxid Med Cell Longev Research Article Asthma is a chronic inflammatory disease of the airways characterized by immune cell infiltrates, bronchial hyperresponsiveness, and declining lung function. Thus, the possible effects of virgin coconut oil on a chronic allergic lung inflammation model were evaluated. Morphology of lung and airway tissue exhibited peribronchial inflammatory infiltrate, epithelial hyperplasia, and smooth muscle thickening in guinea pigs submitted to ovalbumin sensitization, which were prevented by virgin coconut oil supplementation. Additionally, in animals with lung inflammation, trachea contracted in response to ovalbumin administration, showed a greater contractile response to carbachol (CCh) and histamine, and these responses were prevented by the virgin coconut oil supplementation. Apocynin, a NADPH oxidase inhibitor, did not reduce the potency of CCh, whereas tempol, a superoxide dismutase mimetic, reduced potency only in nonsensitized animals. Catalase reduced the CCh potency in nonsensitized animals and animals sensitized and treated with coconut oil, indicating the participation of superoxide anion and hydrogen peroxide in the hypercontractility, which was prevented by virgin coconut oil. In the presence of L-NAME, a nitric oxide synthase (NOS) inhibitor, the CCh curve remained unchanged in nonsensitized animals but had increased efficacy and potency in sensitized animals, indicating an inhibition of endothelial NOS but ineffective in inhibiting inducible NOS. In animals sensitized and treated with coconut oil, the CCh curve was not altered, indicating a reduction in the release of NO by inducible NOS. These data were confirmed by peribronchiolar expression analysis of iNOS. The antioxidant capacity was reduced in the lungs of animals with chronic allergic lung inflammation, which was reversed by the coconut oil, and confirmed by analysis of peribronchiolar 8-iso-PGF2α content. Therefore, the virgin coconut oil supplementation reverses peribronchial inflammatory infiltrate, epithelial hyperplasia, smooth muscle thickening, and hypercontractility through oxidative stress and its interactions with the NO pathway. Hindawi 2020-01-27 /pmc/articles/PMC7008286/ /pubmed/32089769 http://dx.doi.org/10.1155/2020/5148503 Text en Copyright © 2020 Luiz Henrique C. Vasconcelos et al. http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Vasconcelos, Luiz Henrique C.
Silva, Maria da Conceição C.
Costa, Alana C.
de Oliveira, Giuliana A.
de Souza, Iara Leão Luna
Righetti, Renato F.
Queiroga, Fernando R.
Cardoso, Glêbia A.
Silva, Alexandre S.
da Silva, Patrícia M.
Vieira, Giciane C.
Tibério, Iolanda de F. L. C.
Madruga, Marta S.
Cavalcante, Fabiana de A.
da Silva, Bagnólia A.
Virgin Coconut Oil Supplementation Prevents Airway Hyperreactivity of Guinea Pigs with Chronic Allergic Lung Inflammation by Antioxidant Mechanism
title Virgin Coconut Oil Supplementation Prevents Airway Hyperreactivity of Guinea Pigs with Chronic Allergic Lung Inflammation by Antioxidant Mechanism
title_full Virgin Coconut Oil Supplementation Prevents Airway Hyperreactivity of Guinea Pigs with Chronic Allergic Lung Inflammation by Antioxidant Mechanism
title_fullStr Virgin Coconut Oil Supplementation Prevents Airway Hyperreactivity of Guinea Pigs with Chronic Allergic Lung Inflammation by Antioxidant Mechanism
title_full_unstemmed Virgin Coconut Oil Supplementation Prevents Airway Hyperreactivity of Guinea Pigs with Chronic Allergic Lung Inflammation by Antioxidant Mechanism
title_short Virgin Coconut Oil Supplementation Prevents Airway Hyperreactivity of Guinea Pigs with Chronic Allergic Lung Inflammation by Antioxidant Mechanism
title_sort virgin coconut oil supplementation prevents airway hyperreactivity of guinea pigs with chronic allergic lung inflammation by antioxidant mechanism
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7008286/
https://www.ncbi.nlm.nih.gov/pubmed/32089769
http://dx.doi.org/10.1155/2020/5148503
work_keys_str_mv AT vasconcelosluizhenriquec virgincoconutoilsupplementationpreventsairwayhyperreactivityofguineapigswithchronicallergiclunginflammationbyantioxidantmechanism
AT silvamariadaconceicaoc virgincoconutoilsupplementationpreventsairwayhyperreactivityofguineapigswithchronicallergiclunginflammationbyantioxidantmechanism
AT costaalanac virgincoconutoilsupplementationpreventsairwayhyperreactivityofguineapigswithchronicallergiclunginflammationbyantioxidantmechanism
AT deoliveiragiulianaa virgincoconutoilsupplementationpreventsairwayhyperreactivityofguineapigswithchronicallergiclunginflammationbyantioxidantmechanism
AT desouzaiaraleaoluna virgincoconutoilsupplementationpreventsairwayhyperreactivityofguineapigswithchronicallergiclunginflammationbyantioxidantmechanism
AT righettirenatof virgincoconutoilsupplementationpreventsairwayhyperreactivityofguineapigswithchronicallergiclunginflammationbyantioxidantmechanism
AT queirogafernandor virgincoconutoilsupplementationpreventsairwayhyperreactivityofguineapigswithchronicallergiclunginflammationbyantioxidantmechanism
AT cardosoglebiaa virgincoconutoilsupplementationpreventsairwayhyperreactivityofguineapigswithchronicallergiclunginflammationbyantioxidantmechanism
AT silvaalexandres virgincoconutoilsupplementationpreventsairwayhyperreactivityofguineapigswithchronicallergiclunginflammationbyantioxidantmechanism
AT dasilvapatriciam virgincoconutoilsupplementationpreventsairwayhyperreactivityofguineapigswithchronicallergiclunginflammationbyantioxidantmechanism
AT vieiragicianec virgincoconutoilsupplementationpreventsairwayhyperreactivityofguineapigswithchronicallergiclunginflammationbyantioxidantmechanism
AT tiberioiolandadeflc virgincoconutoilsupplementationpreventsairwayhyperreactivityofguineapigswithchronicallergiclunginflammationbyantioxidantmechanism
AT madrugamartas virgincoconutoilsupplementationpreventsairwayhyperreactivityofguineapigswithchronicallergiclunginflammationbyantioxidantmechanism
AT cavalcantefabianadea virgincoconutoilsupplementationpreventsairwayhyperreactivityofguineapigswithchronicallergiclunginflammationbyantioxidantmechanism
AT dasilvabagnoliaa virgincoconutoilsupplementationpreventsairwayhyperreactivityofguineapigswithchronicallergiclunginflammationbyantioxidantmechanism