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Hierarchical Nanoplatforms for High-Performance Enzyme Biocatalysis under Denaturing Conditions

机译:变性条件下的高性能酶生物催化的分层纳米型

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A hierarchically structured nanoplatform comprising the integration of enzymes into a hybrid carbon-nanotube-based magnetic nanocomposite was developed. By means of this complex support, laccases are endowed with exceptional performance even in fully denaturing environments. In this regard, up to 10-fold enhancements in the biocatalytic activity of the enzymes can be attained at different temperatures and pH conditions. Furthermore, these platforms are found to provide laccases with unprecedented recycling potential. In this line, these composites allow straightforward recovery and reuse of the biocatalysts with no loss of efficiency even after 10 successive runs. These outstanding operational capabilities make these nanocarriers a promising material to tackle the challenges associated with the implementation of enzymes in industrial biotechnology.
机译:制定了一种分层结构化纳米片,其包含将酶集成到杂化碳 - 纳米管基磁性纳米复合物中。 借助于这种复杂的支持,即使在完全变性环境中,漆包酶也赋予了卓越的性能。 在这方面,在不同温度和pH条件下可以获得酶的生物催化活性的至多10倍的增强。 此外,发现这些平台提供具有前所未有的回收潜力的漆酶。 在这条线中,这些复合材料允许直接回收和再利用生物催化剂,即使在10次连续运行之后也不会损失效率。 这些出色的操作能力使这些纳米载体成为有希望的材料来解决与工业生物技术酶的实施相关的挑战。

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