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Enzyme Immobilization in MOF-derived Porous NiO with Hierarchical Structure: An Efficient and Stable Enzymatic Reactor

机译:具有等级结构的Mof衍生多孔NiO中的酶固定化:高效稳定的酶反应器

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摘要

MOF-derived porous NiO with hierarchical structure (MHNiO) was prepared based on thermolysis of Ni metal organic framework (Ni-MOF), which was used as carrier for the immobilization of horseradish peroxidase (HRP) and cytochrome C (Cyt c). The pore size of MHNiO was tuned as 11.8 nm to match the size of free enzyme so as to depress the aggregation of the enzymes in the pore. Meanwhile, the hierarchical structure allowed the substrates concentrated in the vicinity of the enzymes. The obtained enzymatic reactors exhibited better thermal stability, storage stability and reusability. For example, over 83 % of its original activity after 1 h incubation at 70 degrees C could be remained compared to 18.1 % or 38.4 % remained activity of free HRP and Cyt c, respectively; After 12 cycles of use, over 53 % of original catalytic activity of both the enzymatic reactor could be maintain. The enzymatic kinetic data (K-m, V-max, k(cat)) and thermodynamic data (K-a, Delta H, Delta S and Delta G) indicated that the improved catalytic performance was attributed to the affinity, selectivity and binding of enzyme to substrate. The two enzymatic reactors could be applied in the fast degradation of 2,4-dichlorophenol and rifaximin in artificial wastewater, a complete degradation of 2 mg . mL(-1) of 2,4-dichlorophenol or 20 mu g . mL(-1) of rifaximin was achieved in only 20 min.
机译:基于Ni金属有机骨架(Ni-MOF)的热解制备具有层次结构(MHNIO)的MOF衍生的多孔NIO,其用作固定辣根过氧化物酶(HRP)和细胞色素C(CYT C)的载体。 MHNIO的孔径调谐为11.8nm以匹配游离酶的尺寸,以便抑制孔中酶的聚集。同时,等级结构允许基材浓缩在酶附近。所得酶反应器表现出更好的热稳定性,储存稳定性和可重用性。例如,在70摄氏度下在70℃温育后,其原始活性的超过83%分别与18.1%或38.4%的游离HRP和CYT C保持孵育。在使用12个循环之后,可以维持53%的酶反应器的原始催化活性。酶动力学数据(KM,V-MAX,K(CAT))和热力学数据(Ka,Delta H,Delta S和Delta G)表明,改善的催化性能归因于酶与底物的亲和力,选择性和结合。可以在人造废水中快速降解2,4-二氯苯酚和利福昔林的两种酶促反应器,完全降解2mg。 m1(-1)2,4-二氯苯酚或20μg。仅在20分钟内实现了利福昔氨酸的ml(-1)。

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