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具有明确定义的十字形花状形态的介孔金属有机骨架用于酶固定化。

Mesoporous Metal-Organic Framework with Well-Defined Cruciate Flower-Like Morphology for Enzyme Immobilization.

机构信息

Key Laboratory of Industrial Fermentation Microbiology, Ministry of Education, Tianjin University of Science and Technology , No 29, 13th, Avenue, Tianjin Economic and Technological Development Area (TEDA), Tianjin 300457, P R China.

Research Center for Fermentation Engineering of Hebei, College of Bioscience and Bioengineering, Hebei University of Science and Technology , 26 Yuxiang Street, Shijiazhang 050000, P R China.

出版信息

ACS Appl Mater Interfaces. 2017 Mar 29;9(12):10587-10594. doi: 10.1021/acsami.7b00512. Epub 2017 Mar 17.

Abstract

Metal-organic frameworks (MOFs) have recently emerged as a promising candidates for the immobilization of enzymes due to their diversified structures and porosity. However, a lack of good size and morphological control over the as-prepared MOFs has limited their practical applications in some cases. Herein, instead of zeolitic imidazolate framework-8 (ZIF-8) with the standard rhombic dodecahedral morphology, we successfully synthesize a novel mesoporous catalase@ZIF composite with cruciate flower-like morphology by embedding catalase molecules into uniformly sized ZIF crystals. With extraordinarily large mesopore size and high protein loading capacity, the catalase@ZIF composites with cruciate flower-like morphology exhibit 400% higher activity than that of catalase@ZIF composites with conventional rhombic dodecahedral morphology, and show higher reusability than conventional rhombic dodecahedral morphology. More importantly, we demonstrate for the first time that the biomacromolecules (proteins) can not directly regulate the crystal size, morphology, and crystallinity of ZIF-8. Moreover, the crystal morphology of ZIF has primary dependence on concentrations of 2-methylimidazole and Zn ions, and can be directly controlled by adjusting concentrations of Zn ions while keeping the high concentration of 2-methylimidazole.

摘要

金属-有机骨架(MOFs)由于其多样的结构和孔隙率,最近成为固定化酶的有前途的候选物。然而,由于缺乏对所制备的 MOFs 的良好的尺寸和形态控制,在某些情况下限制了它们的实际应用。在这里,我们没有选择具有标准的菱十二面体形态的沸石咪唑酯骨架-8(ZIF-8),而是通过将过氧化氢酶分子嵌入到尺寸均匀的 ZIF 晶体中,成功地合成了一种新颖的介孔过氧化氢酶@ZIF 复合材料,具有十字形花状形态。由于具有非常大的介孔尺寸和高蛋白质负载能力,具有十字形花状形态的过氧化氢酶@ZIF 复合材料的活性比具有常规菱十二面体形态的过氧化氢酶@ZIF 复合材料高 400%,并且比常规的菱十二面体形态具有更高的可重复使用性。更重要的是,我们首次证明生物大分子(蛋白质)不能直接调节 ZIF-8 的晶体尺寸、形态和结晶度。此外,ZIF 的晶体形态主要取决于 2-甲基咪唑和 Zn 离子的浓度,并且可以通过调节 Zn 离子的浓度直接控制,同时保持高浓度的 2-甲基咪唑。

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