Mostrando 3 resultados de: 3
Complete sucrose hydrolysis by heat-killed recombinant Pichia pastoris cells entrapped in calcium alginate
ArticleAbstract: Background: An ideal immobilized biocatalyst for the industrial-scale production of invert sugar shoPalabras claves:Alginate, Immobilization, Invertase, PICHIA PASTORIS, Thermotoga maritimaAutores:Echemendia F.M., Hernandez L., Luis E. Trujillo, Martínez D., Menéndez C., Pérez E.R., Quintero Y., Ramírez R., Sobrino A.Fuentes:scopusDevelopment of soluble and immobilized Biocatalysts based on a recombinant thermostable β-fructosidase enabling complete sucrose inversion at pasteurization temperatures
ArticleAbstract: Biocatalysts for the industrial production of invert sugar are preferred to stably operate at high sPalabras claves:Immobilization, Invert syrup, Invertase, PICHIA PASTORIS, Thermotoga maritimaAutores:Basabe L., Cutiño-Ávila B.V., Del Monte-Martínez A., Hernandez L., Luis E. Trujillo, Martínez D., Menéndez C., Pérez E.R., Ramírez R., Sobrino A.Fuentes:scopusScaling-up batch conditions for efficient sucrose hydrolysis catalyzed by an immobilized recombinant Pichia pastoris cells in a stirrer tank reactor
ArticleAbstract: Background: Invert sugar is used greatly in food and pharmaceutical industries. This paper describesPalabras claves:Bioreactor, Calcium alginate beads, Enzymatic biocatalyst, Immobilized biocatalyst, Industrial biotechnology, Invert sugar, Invertase, Kinetic model, Scale-up, Stirred tank reactor, Sucrose inversionAutores:Hernandez L., Luis E. Trujillo, Martínez D., Menéndez C., Pérez E.R., Rodríguez I., Sobrino A.Fuentes:scopus