Immobilization of a Fungal Fructosyltransferase onto Silica Gel and Glutaraldehyde-Functionalized Silica Gel for Biocatalytic Applications

硅胶 化学 色谱法 凝胶渗透色谱法 凝胶电泳 化学工程 聚丙烯酰胺凝胶电泳 酵母 催化作用
作者
José Pedro Zanetti Prado,Ana Carolina Vieira,Alfredo Eduardo Maiorano,Sérgio Fernandes,Rodrigo Corrêa Basso,Sylma Carvalho Maestrelli,Cristiane Angélica Ottoni,Michelle da Cunha Abreu Xavier,Sergio Andrés Villalba Morales,Rafael Firmani Perna
出处
期刊:ACS omega [American Chemical Society]
卷期号:11 (8): 13172-13183
标识
DOI:10.1021/acsomega.5c08802
摘要

High Resolution Image Download MS PowerPoint Slide The immobilization of fructosyltransferase enzymes has been identified as an essential strategy for the production of fructooligosaccharides (FOS) in heterogeneous reaction systems. This study investigated the applicability of silica gel and silica gel functionalized with glutaraldehyde as porous inorganic supports for the immobilization of the extracellular fructosyltransferase from Aspergillus oryzae IPT-301, aiming to obtain active and stable heterogeneous biocatalysts for FOS production. The silicas were characterized using Fourier transform infrared (FTIR), scanning electron microscopy (SEM) and N 2 physisorption. The thermal, operational, storage, and pH stability, as well as the kinetic profiles of the biocatalysts, were evaluated. The functionalized silica gel achieved higher immobilization yield but exhibited lower recovered activity values compared to the silica gel without glutaraldehyde. The enzyme immobilized on both supports showed higher activity at initial substrate concentrations between 400 g L –1 and 600 g L –1 with different kinetic behaviors. The functionalized silica gel showed greater capacity for reuse over eight consecutive reaction cycles, also exhibiting higher thermal, storage and pH stability compared to the biocatalyst adsorbed onto the pure support. The results suggest a high potential for the application of glutaraldehyde-functionalized silica gel as a support for FTase immobilization for FOS production.
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