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MOFs as Potential Matrices in Cyclodextrin Glycosyltransferase Immobilization

机译:作为环糊精糖基三转移酶固定化的潜在基质

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摘要

Cyclodextrins (CDs) and their derivatives have attracted significant attention in the pharmaceutical, food, and textile industries, which has led to an increased demand for their production. CD is typically produced by the action of cyclodextrin glycosyltransferase (CGTase) on starch. Owing to the relatively high cost of enzymes, the economic feasibility of the entire process strongly depends on the effective retention and recycling of CGTase in the reaction system, while maintaining its stability. CGTase enzymes immobilized on various supports such as porous glass beads or glyoxyl-agarose have been previously used to achieve this objective. Nevertheless, the attachment of biocatalysts on conventional supports is associated with numerous drawbacks, including enzyme leaching prominent in physical adsorption, reduced activity as a result of chemisorption, and increased mass transfer limitations. Recent reports on the successful utilization of metal–organic frameworks (MOFs) as supports for various enzymes suggest that CGTase could be immobilized for enhanced production of CDs. The three-dimensional microenvironment of MOFs could maintain the stability of CGTase while posing minimal diffusional limitations. Moreover, the presence of different functional groups on the surfaces of MOFs could provide multiple points for attachment of CGTase, thereby reducing enzyme loss through leaching. The present review focuses on the advantages MOFs can offer as support for CGTase immobilization as well as their potential for application in CD production.
机译:环糊精(CDS)及其衍生物在制药,食品和纺织工业中引起了显着的关注,这导致了对其生产的需求增加。 CD通常由环糊精糖基转移酶(CGTase)对淀粉的作用产生。由于酶成本相对较高,整个过程的经济可行性强烈取决于CGTase在反应体系中的有效保留和再循环,同时保持其稳定性。以前用于达到该目标的各种载体上固定在多孔玻璃珠粒或乙二醇基 - 琼脂糖上的CGTase酶。然而,生物催化剂对常规支撑件的附着与许多缺点相关,包括在物理吸附中突出的酶突出,由于化学的结果,减少活性以及增加的传质限制。最近关于成功利用金属 - 有机框架(MOF)作为各种酶的支持的报道表明CGTase可以固定为增强Cds的增强。 MOF的三维微环境可以保持CGTase的稳定性,同时摆姿势最小的扩散限制。此外,在MOF的表面上存在不同官能团的存在可以提供用于连接CGTase的多个点,从而通过浸出降低酶损失。本综述重点介绍了MOFS可以提供​​对CGTase固定化的支持以及它们在CD生产中的应用潜力。

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