4.8 Article

Imparting Functionality to Biocatalysts via Embedding Enzymes into Nanoporous Materials by a de Novo Approach: Size-Selective Sheltering of Catalase in Metal-Organic Framework Microcrystals

期刊

JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
卷 137, 期 13, 页码 4276-4279

出版社

AMER CHEMICAL SOC
DOI: 10.1021/ja513058h

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资金

  1. Ministry of Science and Technology [MOST 103-2113-M-008-001, 101-2628-E-002-015-MY3, 101-2623-E-002-005-ET, 101-2923-E-002-012-MY3, 103-2218-E-002-101]
  2. Aim for Top University Project by the Ministry of Education, Taiwan
  3. Boston College
  4. American Chemical Society

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We develop a new concept to impart new functions to biocatalysts by combining enzymes and metal-organic frameworks (MOFs). The proof-of-concept design is demonstrated by embedding catalase molecules into uniformly sized ZIF-90 crystals via a de novo approach. We have carried out electron microscopy, X-ray diffraction, nitrogen sorption, electrophoresis, thermogravimetric analysis, and confocal microscopy to confirm that the similar to 10 nm catalase molecules are embedded in 2 mu m single-crystalline ZIF-90 crystals with similar to 5 wt % loading. Because catalase is immobilized and sheltered by the ZIF-90 crystals, the composites show activity in hydrogen peroxide degradation even in the presence of protease proteinase K.

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