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

机译:金属有机骨架的仿生矿化作为生物大分子的保护涂层

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摘要

Enhancing the robustness of functional biomacromolecules is a critical challenge in biotechnology, which if addressed would enhance their use in pharmaceuticals, chemical processing and biostorage. Here we report a novel method, inspired by natural biomineralization processes, which provides unprecedented protection of biomacromolecules by encapsulating them within a class of porous materials termed metal-organic frameworks. We show 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. The resulting biocomposite is stable under conditions that would normally decompose many biological macromolecules. For example, urease and horseradish peroxidase protected within a metal-organic framework shell are found to retain bioactivity after being treated at 80 °C and boiled in dimethylformamide (153 °C), respectively. This rapid, low-cost biomimetic mineralization process gives rise to new possibilities for the exploitation of biomacromolecules.
机译:增强功能性生物大分子的坚固性是生物技术中的关键挑战,如果得到解决,将增强其在制药,化学加工和生物存储中的用途。在这里,我们报告了一种受自然生物矿化过程启发的新颖方法,该方法通过将生物大分子封装在称为金属有机骨架的一类多孔材料中来提供空前的保护。我们展示了蛋白质,酶和DNA通过集中构架基块并促进生物大分子周围的结晶,可以在生理条件下迅速诱导出保护性金属-有机构架涂层的形成。所得的生物复合物在通常会分解许多生物大分子的条件下是稳定的。例如,发现金属-有机骨架壳中受保护的脲酶和辣根过氧化物酶分别在80°C下处理并在二甲基甲酰胺(153°C)中煮沸后保留生物活性。这种快速,低成本的仿生矿化过程为生物大分子的开发提供了新的可能性。

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