dc.creatorMartins-Olivera, Bruno Tadeu
dc.creatorAlmeida-Reis, Rafael
dc.creatorTheodoro-Junior, Osmar Aparecido
dc.creatorOliva, Leandro Vilela
dc.creatordos Santos Nunes, Natalia Neto [UNIFESP]
dc.creatorOlivo, Clarice Rosa
dc.creatorde Brito, Marlon Vilela [UNIFESP]
dc.creatorPrado, Carla Maximo [UNIFESP]
dc.creatorLeick, Edna Aparecida
dc.creatorMartins, Milton de Arruda
dc.creatorVilela Oliva, Maria Luiza [UNIFESP]
dc.creatorRighetti, Renato Fraga
dc.creatorLopes Calvo Tiberio, Iolanda de Fatima
dc.date.accessioned2019-01-21T10:29:52Z
dc.date.available2019-01-21T10:29:52Z
dc.date.created2019-01-21T10:29:52Z
dc.date.issued2016
dc.identifierMediators Of Inflammation. New york, 2016.
dc.identifier0962-9351
dc.identifierhttp://repositorio.unifesp.br/handle/11600/49448
dc.identifierWOS000381139500001.pdf
dc.identifier10.1155/2016/5346574
dc.identifierWOS:000381139500001
dc.description.abstractBackground. Elastase mediates important oxidative actions during the development of chronic obstructive pulmonary disease (COPD). However, few resources for the inhibition of elastase have been investigated. Our study evaluated the ability of the recombinant plant derived Bauhinia bauhinioides Kallikrein proteinase Inhibitor (rBbKI) to modulate elastase-induced pulmonary inflammation. Methods. C57Bl/6 mice were given intratracheal elastase (ELA group) or saline (SAL group) and were treated intraperitoneally with rBbKI (ELA-rBbKI and SAL-rBbKI groups). At day 28, the following analyses were performed: (I) lung mechanics, (II) exhaled nitric oxide (ENO), (III) bronchoalveolar lavage fluid (BALF), and (IV) lung immunohistochemical staining. Results. In addition to decreasing mechanical alterations and alveolar septum disruption, rBbKI reduced the number of cells in the BALF and decreased the cellular expression of TNF-alpha, MMP-9, MMP-12, TIMP-1, eNOS, and iNOS in airways and alveolar walls compared with the ELA group. rBbKI decreased the volume proportion of 8-iso-PGF2 alpha, collagen, and elastic fibers in the airways and alveolar walls compared with the ELA group. A reduction in the number of MUC-5-positive cells in the airway walls was also observed. Conclusion. rBbKI reduced elastase-induced pulmonary inflammation and extracellular matrix remodeling. rBbKI may be a potential pharmacological tool for COPD treatment.
dc.languageeng
dc.publisherActa Cirurgica Brasileira
dc.relationMediators Of Inflammation
dc.rightsAcesso aberto
dc.subjectInduced Pulmonary-Emphysema
dc.subjectRho-Kinase Inhibition
dc.subjectChronic Inflammation
dc.subjectPlasma Kallikrein
dc.subjectAnimal-Models
dc.subjectCopd
dc.subjectLung
dc.subjectStress
dc.subjectTissue
dc.subjectProliferation
dc.titleThe plant-derived bauhinia bauhinioides kallikrein proteinase inhibitor (rbbki) attenuates elastase-induced emphysema in mice
dc.typeArtigo


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