Utilize este identificador para referenciar este registo: https://hdl.handle.net/1822/42333

TítuloOptimization of production, biochemical characterization and In Vitro evaluation of the therapeutic potential of fibrinolytic enzymes from a new Bacillus Amyloliquefaciens
Autor(es)de Souza, Fabiana América Silva Dantas
Sales, Amanda Emmanuelle
Costa e Silva, Pablo Eugênio
Bezerra, Raquel Pedrosa
de Medeiros e Silva, Germana Michelle
de Araújo, Janete Magali
de Campos Takaki, Galba Maria
Porto, Tatiana Souza
Teixeira, J. A.
Porto, Ana Lúcia Figueiredo
Palavras-chavescreening
Bacillus amyloliquefaciens
fibrinolytic enzyme
optimization
characterization
DataJul-2016
EditoraPolymer Society of Korea
RevistaMacromolecular Research
Citaçãode Souza, Fabiana América Silva Dantas; Sales, Amanda Emmanuelle ; Costa e Silva, Pablo Eugênio; Bezerra, Raquel Pedrosa; de Medeiros e Silva, Germana Michelle; de Araújo, Janete Magali; de Campos Takaki, Galba Maria; Porto, Tatiana Souza; Teixeira, J. A.; Porto, Ana Lúcia Figueiredo, Optimization of production, biochemical characterization and In Vitro evaluation of the therapeutic potential of fibrinolytic enzymes from a new Bacillus Amyloliquefaciens. Macromolecular Research, 24(7), 587-595, 2016
Resumo(s)The capacity of fibrinolytic enzymes to degrade blood clots makes them of high relevance in medicine and in the pharmaceutical industry. In this work, forty-three microorganisms of the genus Bacillus were evaluated for their potential to produce fibrinolytic proteases. Thirty bacteria were confirmed as producers of fibrinolytic enzymes, the best results obtained for the strain Bacillus amyloliquefaciens UFPEDA 485. The optimization of the enzyme production conditions was done by a central composite design (CCD) star 23 that allowed to define the optimal conditions for soybean flour and glucose concentrations and agitation rate. The highest fibrinolytic activity (FA) of 813 U mL-1 and a degradation of blood clot in vitro of 62% were obtained in a medium with 2% (w/v) of soybean flour and 1% (w/v) glucose at 200 rpm after 48 h of cultivation, at pH 7.2 and 37 °C. The obtained fibrinolytic enzyme was characterized biochemically. Fibrinolytic activity was inhibited by PMSF (fluoride methylphenylsulfonyl - C7H7FO2S) 91.52% and EDTA (ethylenediaminetetraacetic acid - C10H16N2O8) 89.4%, confirming to be a serine- metallo protease. The optimum pH and temperature were 7.0 and 37 oC, respectively, and the enzyme was stable for 12 h. The fibrinolytic activity at physiological conditions of this enzyme produced by Bacillus amyloliquefaciens UFPEDA 485, as well as its long term stability, demonstrate that it has suitable characteristics for human and veterinary applications, and promises to be a powerful drug for the treatment of vascular diseases.
TipoArtigo
URIhttps://hdl.handle.net/1822/42333
DOI10.1007/s13233-016-4089-2
ISSN1598-5032
Arbitragem científicayes
AcessoAcesso aberto
Aparece nas coleções:CEB - Publicações em Revistas/Séries Internacionais / Publications in International Journals/Series

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