Immobilized enzymes typically have greater thermal and operational stability than their soluble form. Here we report that for the first time, a nerve agent detoxifying enzyme, organophosphorus acid anhydrolase (OPAA), has been successfully encapsulated into a water-stable zirconium metal–organic framework (MOF). This MOF features a hierarchical mesoporous channel structure and exhibits a 12 wt % loading capacity of OPAA. The thermal and long-term stabilities of OPAA are both significantly enhanced after immobilization
Metal-organic frameworks (MOFs) have been reported to effectively detoxify chemical warfare agents (...
Encapsulation of biomacromolecules in metal-organic frameworks (MOFs) can preserve biological functi...
Enzyme immobilization in metal–organic frameworks (MOFs) as a promising strategy is attracting the i...
We report the synthesis and characterization of a water-stable zirconium metal–organic framework (MO...
Organophosphorus acid anhydrolase (OPAA) was successfully encapsulated in situ into silica and organ...
Enzyme immobilization and encapsulation in various nanostructures has drawn great interest as it off...
Summary: Enzymes are promising catalysts with high selectivity and activity under mild reaction cond...
Abstract Objectives Enzyme/metal-organic framework composites with high stability in protein denatur...
International audienceMicroperoxidase-8, a small, peroxidase-type enzyme was successfully immobilize...
Enzymatic catalysis is of great importance to the chemical industry. However, we are still scratchin...
UiO-66, MOF-808 and NU-1000 metal-organic frameworks exhibit a differentiated reactivity toward [Mg(...
Highly efficient cell-free enzymatic systems are typically difficult to achieve in traditional immob...
Protection of biological assemblies is critical to applications in biotechnology, increasing the dur...
Due to their efficiency, selectivity, and environmental sustainability, there are significant opport...
Because of their efficiency, selectivity, and environmental sustainability, there are significant op...
Metal-organic frameworks (MOFs) have been reported to effectively detoxify chemical warfare agents (...
Encapsulation of biomacromolecules in metal-organic frameworks (MOFs) can preserve biological functi...
Enzyme immobilization in metal–organic frameworks (MOFs) as a promising strategy is attracting the i...
We report the synthesis and characterization of a water-stable zirconium metal–organic framework (MO...
Organophosphorus acid anhydrolase (OPAA) was successfully encapsulated in situ into silica and organ...
Enzyme immobilization and encapsulation in various nanostructures has drawn great interest as it off...
Summary: Enzymes are promising catalysts with high selectivity and activity under mild reaction cond...
Abstract Objectives Enzyme/metal-organic framework composites with high stability in protein denatur...
International audienceMicroperoxidase-8, a small, peroxidase-type enzyme was successfully immobilize...
Enzymatic catalysis is of great importance to the chemical industry. However, we are still scratchin...
UiO-66, MOF-808 and NU-1000 metal-organic frameworks exhibit a differentiated reactivity toward [Mg(...
Highly efficient cell-free enzymatic systems are typically difficult to achieve in traditional immob...
Protection of biological assemblies is critical to applications in biotechnology, increasing the dur...
Due to their efficiency, selectivity, and environmental sustainability, there are significant opport...
Because of their efficiency, selectivity, and environmental sustainability, there are significant op...
Metal-organic frameworks (MOFs) have been reported to effectively detoxify chemical warfare agents (...
Encapsulation of biomacromolecules in metal-organic frameworks (MOFs) can preserve biological functi...
Enzyme immobilization in metal–organic frameworks (MOFs) as a promising strategy is attracting the i...