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Biomimetic mineralization of metal-organic frameworks as protective coatings for biomacromolecules.

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TLDR
It is shown that proteins, enzymes and DNA rapidly induce the formation of protective metal-organic framework coatings under physiological conditions by concentrating the framework building blocks and facilitating crystallization around the biomacromolecules.
Abstract
Robust biomacromolecules could be used for a wide range of biotechnological applications. Here the authors report a biomimetic mineralization process, in which biomolecules are encapsulated within metal-organic frameworks, and their stability is subsequently increased without significant bioactivity loss.

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Journal ArticleDOI

Crystalline Cyclophane-Protein Cage Frameworks.

TL;DR: This work synthesized a library of organic cyclophanes and studied their electrostatic self-assembly with biological metal-binding protein cages (ferritins) into ordered structures, showing that cationic pillar[5]arenes and ferritin cages form biohybrid cocrystals with an open protein network structure.
Journal ArticleDOI

Engineering of Nanoscale Coordination Polymers with Biomolecules for Advanced Applications.

TL;DR: In this review, the state-of-the-art of approaches to engineer NCPs with different types of guest biomolecules, such as amino acids, nucleic acids, enzymes and lipids are systematically introduced.
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Immobilization of lipase AYS on UiO-66-NH2 metal-organic framework nanoparticles as a recyclable biocatalyst for ester hydrolysis and kinetic resolution

TL;DR: In this paper, a simple and efficient method for enzyme immobilization, which may be well-adapted to prepare enzymatic bio-catalyst for industrial applications, is presented.
Journal ArticleDOI

Synthesis of cinnamyl benzoate over novel heteropoly acid encapsulated ZIF-8

TL;DR: In this paper, Dodecatungstophosphoric acid (DTP) encapsulated ZIF-8 was prepared first time using bottle around the ship strategy and showed high catalytic activity for esterification reaction of benzoic anhydride with cinnamyl alcohol to form cinnamide benzoate.
Journal ArticleDOI

Bimetallic metal-organic framework for enzyme immobilization by biomimetic mineralization: Constructing a mimic enzyme and simultaneously immobilizing natural enzymes.

TL;DR: The GOx/FeNi-MOF was selected as a proof of concept and succeeded in a one-step colorimetric detection of glucose by tandem catalysis, indicating that the sensor can meet the clinical needs for diagnose diabetes.
References
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Journal ArticleDOI

The Chemistry and Applications of Metal-Organic Frameworks

TL;DR: Metal-organic frameworks are porous materials that have potential for applications such as gas storage and separation, as well as catalysis, and methods are being developed for making nanocrystals and supercrystals of MOFs for their incorporation into devices.
Journal ArticleDOI

Reticular synthesis and the design of new materials

TL;DR: This work has shown that highly porous frameworks held together by strong metal–oxygen–carbon bonds and with exceptionally large surface area and capacity for gas storage have been prepared and their pore metrics systematically varied and functionalized.
Journal ArticleDOI

Exceptional chemical and thermal stability of zeolitic imidazolate frameworks

TL;DR: Study of the gas adsorption and thermal and chemical stability of two prototypical members, ZIF-8 and -11, demonstrated their permanent porosity, high thermal stability, and remarkable chemical resistance to boiling alkaline water and organic solvents.
Book ChapterDOI

The assay of catalases and peroxidases.

TL;DR: Two methods are described for the catalase assay by disappearance of peroxide are: ultraviolet spectrophotometry and permanganate titration and indirect measurements of the decrease of light absorption caused by the decomposition of hydrogen peroxide byCatalase.
Journal ArticleDOI

Metal-organic frameworks in biomedicine.

TL;DR: Metal Organic Frameworks in Biomedicine Patricia Horcajada, Ruxandra Gref, Tarek Baati, Phoebe K. Allan, Guillaume Maurin, Patrick Couvreur, G erard F erey, Russell E. Morris, and Christian Serre.
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