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Enzyme Immobilization on Metal-Organic Framework (MOF): Effects on Thermostability and Function

机译:金属有机框架(MOF)上的酶固定化:对热稳定性和功能的影响

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摘要

MOFs are porous materials with adjustable porosity ensuing a tenable surface area and stability. MOFs consist of metal containing joint where organic ligands are linked with coordination bonding rendering a unique architecture favouring the diverse applications in attachment of enzymes, Chemical catalysis, Gases storage and separation, biomedicals. In the past few years immobilization of soluble enzymes on/in MOF has been the topic of interest for scientists working in diverse field. The activity of enzyme, reusability, storage, chemical and thermal stability, affinity with substrate can be greatly improved by immobilizing of enzyme on MOFs. Along with improvement in enzymes properties, the high loading of enzyme is also observed while using MOFs as immobilization support. In this review a detail study of immobilization on/in Metal-organic Frameworks (MOFs) have been described. Furthermore, strategies for the enzyme immobilization on MOFs and resulting in improved catalytic performance of immobilized enzymes have been reported.
机译:MOF是具有可调节孔隙率的多孔材料,随之而来的孔隙率和稳定性。 MOF由含金属的关节组成,其中有机配体与配位粘合连接,呈现出独特的建筑,旨在拟合酶,化学催化,气体储存和分离,生物医学。在过去的几年里,MOF的可溶性酶的固定是在不同领域工作的科学家感兴趣的话题。通过在MOF上固定酶,可以大大提高酶活性,可重用性,储存,化学和热稳定性,与基材的亲和力大大提高。随着酶特性的改善,在使用MOFS作为固定载体的同时也观察到酶的高负载。在该综述中,已经描述了对金属有机框架(MOF)上的固定化的细节研究。此外,已经报道了对MOF上的酶固定化并导致改善固定化酶的催化性能的策略。

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