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The Plant Proteinase Inhibitor CrataBL Plays a Role in Controlling Asthma Response in Mice
Background. CrataBL is a protein isolated from Crataeva tapia bark. It has been shown to exhibit several biological properties, including anti-inflammatory, analgesic, antitumor, and insecticidal activities. There are no studies evaluating the role of CrataBL in experimental asthma models. Aim. To e...
Autores principales: | , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Hindawi
2018
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6188594/ https://www.ncbi.nlm.nih.gov/pubmed/30364003 http://dx.doi.org/10.1155/2018/9274817 |
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author | Bortolozzo, Anelize Sartori Santos Rodrigues, Adriana Palmeira Dias Arantes-Costa, Fernanda Magalhães Saraiva-Romanholo, Beatriz Mangueira de Souza, Flávia Castro Ribas Brüggemann, Thayse Regina de Brito, Marlon Vilela Ferreira, Rodrigo da Silva Correia, Maria Tereza dos Santos Paiva, Patrícia Maria Guedes Prado, Carla Máximo Leick, Edna Aparecida Oliva, Maria Luiza Vilela Martins, Milton de Arruda Ruiz-Schutz, Viviane Christina Righetti, Renato Fraga Tibério, Iolanda de Fátima Lopes Calvo |
author_facet | Bortolozzo, Anelize Sartori Santos Rodrigues, Adriana Palmeira Dias Arantes-Costa, Fernanda Magalhães Saraiva-Romanholo, Beatriz Mangueira de Souza, Flávia Castro Ribas Brüggemann, Thayse Regina de Brito, Marlon Vilela Ferreira, Rodrigo da Silva Correia, Maria Tereza dos Santos Paiva, Patrícia Maria Guedes Prado, Carla Máximo Leick, Edna Aparecida Oliva, Maria Luiza Vilela Martins, Milton de Arruda Ruiz-Schutz, Viviane Christina Righetti, Renato Fraga Tibério, Iolanda de Fátima Lopes Calvo |
author_sort | Bortolozzo, Anelize Sartori Santos |
collection | PubMed |
description | Background. CrataBL is a protein isolated from Crataeva tapia bark. It has been shown to exhibit several biological properties, including anti-inflammatory, analgesic, antitumor, and insecticidal activities. There are no studies evaluating the role of CrataBL in experimental asthma models. Aim. To evaluate the effects of CrataBL on lung mechanics, inflammation, remodeling, and oxidative stress activation of mice with allergic pulmonary inflammation. Materials and Methods. BALB/c mice (6-7 weeks old, 25-30g) were divided into four groups: nonsensitized and nontreated mice (C group, n=8); ovalbumin- (OVA-) sensitized and nontreated mice (OVA group, n=8); nonsensitized and CrataBL-treated mice (C+CR group, n=8); OVA-sensitized and CrataBL-treated mice (OVA+CR group, n=8). We evaluated hyperresponsiveness to methacholine, bronchoalveolar lavage fluid (BALF), pulmonary inflammation, extracellular matrix remodeling, and oxidative stress markers. Results. CrataBL treatment in OVA-sensitized mice (OVA+CR group) attenuated the following variables compared to OVA-sensitized mice without treatment (OVA group) (all p<0.05): (1) respiratory system resistance (Rrs) and elastance (Ers) after methacholine challenge; (2) total cells, macrophages, polymorphonuclear cells, and lymphocytes in BALF; (3) eosinophils and volume fraction of collagen and elastic fibers in the airway and alveolar wall according to histopathological and morphometry analysis; (4) IL-4-, IL-5-, IL-13-, IL-17-, IFN-γ-, MMP-9-, TIMP-1-, TGF-β-, iNOS-, and NF-kB-positive cells and volume of 8-iso-PGF2α in airway and alveolar septa according to immunohistochemistry; and (5) IL-4, IL-5, and IFN-γ according to an ELISA. Conclusion. CrataBL contributes to the control of hyperresponsiveness, pulmonary inflammation, extracellular matrix remodeling, and oxidative stress responses in an animal model of chronic allergic pulmonary inflammation. |
format | Online Article Text |
id | pubmed-6188594 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2018 |
publisher | Hindawi |
record_format | MEDLINE/PubMed |
spelling | pubmed-61885942018-10-25 The Plant Proteinase Inhibitor CrataBL Plays a Role in Controlling Asthma Response in Mice Bortolozzo, Anelize Sartori Santos Rodrigues, Adriana Palmeira Dias Arantes-Costa, Fernanda Magalhães Saraiva-Romanholo, Beatriz Mangueira de Souza, Flávia Castro Ribas Brüggemann, Thayse Regina de Brito, Marlon Vilela Ferreira, Rodrigo da Silva Correia, Maria Tereza dos Santos Paiva, Patrícia Maria Guedes Prado, Carla Máximo Leick, Edna Aparecida Oliva, Maria Luiza Vilela Martins, Milton de Arruda Ruiz-Schutz, Viviane Christina Righetti, Renato Fraga Tibério, Iolanda de Fátima Lopes Calvo Biomed Res Int Research Article Background. CrataBL is a protein isolated from Crataeva tapia bark. It has been shown to exhibit several biological properties, including anti-inflammatory, analgesic, antitumor, and insecticidal activities. There are no studies evaluating the role of CrataBL in experimental asthma models. Aim. To evaluate the effects of CrataBL on lung mechanics, inflammation, remodeling, and oxidative stress activation of mice with allergic pulmonary inflammation. Materials and Methods. BALB/c mice (6-7 weeks old, 25-30g) were divided into four groups: nonsensitized and nontreated mice (C group, n=8); ovalbumin- (OVA-) sensitized and nontreated mice (OVA group, n=8); nonsensitized and CrataBL-treated mice (C+CR group, n=8); OVA-sensitized and CrataBL-treated mice (OVA+CR group, n=8). We evaluated hyperresponsiveness to methacholine, bronchoalveolar lavage fluid (BALF), pulmonary inflammation, extracellular matrix remodeling, and oxidative stress markers. Results. CrataBL treatment in OVA-sensitized mice (OVA+CR group) attenuated the following variables compared to OVA-sensitized mice without treatment (OVA group) (all p<0.05): (1) respiratory system resistance (Rrs) and elastance (Ers) after methacholine challenge; (2) total cells, macrophages, polymorphonuclear cells, and lymphocytes in BALF; (3) eosinophils and volume fraction of collagen and elastic fibers in the airway and alveolar wall according to histopathological and morphometry analysis; (4) IL-4-, IL-5-, IL-13-, IL-17-, IFN-γ-, MMP-9-, TIMP-1-, TGF-β-, iNOS-, and NF-kB-positive cells and volume of 8-iso-PGF2α in airway and alveolar septa according to immunohistochemistry; and (5) IL-4, IL-5, and IFN-γ according to an ELISA. Conclusion. CrataBL contributes to the control of hyperresponsiveness, pulmonary inflammation, extracellular matrix remodeling, and oxidative stress responses in an animal model of chronic allergic pulmonary inflammation. Hindawi 2018-10-01 /pmc/articles/PMC6188594/ /pubmed/30364003 http://dx.doi.org/10.1155/2018/9274817 Text en Copyright © 2018 Anelize Sartori Santos Bortolozzo et al. https://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 Bortolozzo, Anelize Sartori Santos Rodrigues, Adriana Palmeira Dias Arantes-Costa, Fernanda Magalhães Saraiva-Romanholo, Beatriz Mangueira de Souza, Flávia Castro Ribas Brüggemann, Thayse Regina de Brito, Marlon Vilela Ferreira, Rodrigo da Silva Correia, Maria Tereza dos Santos Paiva, Patrícia Maria Guedes Prado, Carla Máximo Leick, Edna Aparecida Oliva, Maria Luiza Vilela Martins, Milton de Arruda Ruiz-Schutz, Viviane Christina Righetti, Renato Fraga Tibério, Iolanda de Fátima Lopes Calvo The Plant Proteinase Inhibitor CrataBL Plays a Role in Controlling Asthma Response in Mice |
title | The Plant Proteinase Inhibitor CrataBL Plays a Role in Controlling Asthma Response in Mice |
title_full | The Plant Proteinase Inhibitor CrataBL Plays a Role in Controlling Asthma Response in Mice |
title_fullStr | The Plant Proteinase Inhibitor CrataBL Plays a Role in Controlling Asthma Response in Mice |
title_full_unstemmed | The Plant Proteinase Inhibitor CrataBL Plays a Role in Controlling Asthma Response in Mice |
title_short | The Plant Proteinase Inhibitor CrataBL Plays a Role in Controlling Asthma Response in Mice |
title_sort | plant proteinase inhibitor cratabl plays a role in controlling asthma response in mice |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6188594/ https://www.ncbi.nlm.nih.gov/pubmed/30364003 http://dx.doi.org/10.1155/2018/9274817 |
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