首页> 外文期刊>Journal of Agricultural and Food Chemistry >Establishing the Feasibility of Using β-Glucosidase Entrapped in Lentikats and in Sol-Gel Supports for Cellobiose Hydrolysis
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Establishing the Feasibility of Using β-Glucosidase Entrapped in Lentikats and in Sol-Gel Supports for Cellobiose Hydrolysis

机译:建立在Lentikats和Sol-Gel载体中夹带β-葡萄糖苷酶进行纤维二糖水解的可行性

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β-GIucosidases represent an important group of enzymes due to their pivotal role in various biotechnological processes. One of the most prominent is biomass degradation for the production of fuel ethanol from cellulosic agricultural residues and wastes, where the use of immobilized biocatalysts may prove advantageous. Within such scope, the present work aimed to evaluate the feasibility of entrapping β-glucosidase in either sol—gel or in Lentikats supports for application in cellobiose hydrolysis, and to perform the characterization of the resulting bioconversion systems. The activity and stability of the immobilized biocatalyst over given ranges of temperature and pH values were assessed, as well as kinetic data, and compared to the free form, and the operational stability was evaluated. Immobilization increased the thermal stability of the enzyme, with a 10 °C shift to an optimal temperature in the case of sol—gel support. Mass transfer hindrances as a result of immobilization were not significant, for sol—gel support. Lentikats-entrapped glucosidase was used in 19 consecutive batch runs for cellobiose hydrolysis, without noticeable decrease in product yield. Moreover, encouraging results were obtained for continuous operation. In the overall, the feasibility of using immobilized biocatalysts for cellobiose hydrolysis was established.
机译:β-葡糖苷酶由于其在各种生物技术过程中的关键作用而代表了一组重要的酶。最突出的问题之一是从纤维素农业残留物和废物生产燃料乙醇的生物质降解,其中使用固定化生物催化剂可能被证明是有利的。在这样的范围内,本工作旨在评估将β-葡萄糖苷酶包埋在溶胶-凝胶或Lentikats载体中的可行性,以支持在纤维二糖水解中的应用,并进行所得生物转化系统的表征。评估了固定生物催化剂在给定温度和pH值范围内的活性和稳定性,以及动力学数据,并与游离形式进行了比较,并评估了操作稳定性。固定化增加了酶的热稳定性,在溶胶-凝胶支持的情况下,将其转变为最佳温度10°C。对于溶胶-凝胶支持,固定化导致的传质障碍并不明显。连续19次分批运行将包埋有Lentikats的葡糖苷酶用于纤维二糖水解,而产物收率没有明显下降。此外,连续操作获得了令人鼓舞的结果。总体而言,确立了使用固定化生物催化剂进行纤维二糖水解的可行性。

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