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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Controlling enzyme function through immobilisation on graphene, graphene derivatives and other two dimensional nanomaterials
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Controlling enzyme function through immobilisation on graphene, graphene derivatives and other two dimensional nanomaterials

机译:通过固定在石墨烯,石墨烯衍生物和其他二维纳米材料上固定控制酶函数

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Robust enzyme immobilisation methods that preserve enzyme activity while enabling enzymes to be recovered and reused multiple times have important applications in biocatalysis. However, immobilisation can change the functionality of enzymes, both in terms of their level of activity and their selectivity. These changes in activity are unpredictable and at present cannot be controlled, but if fully understood at a fundamental level could offer the opportunity to create highly targetted enzyme systems for specific applications. In this review, we will highlight the use of two dimensional nanomaterials (2D NMs), particularly graphene and its derivatives, as immobilisation materials to modify and control the selectivity and activity of various enzymes. The fundamental information obtained from immobilising enzymes on 2D NMs allows for the implementation of improved immobilisation strategies and assists in the design of next generation nano- and macro-materials for enzyme immobilisation. We hope that this review will highlight the potential for tailoring enzyme activity and selectivity through immobilisation.
机译:保存酶活性的鲁棒酶固定方法,同时使待回收酶并重复使用多次在生物催化中具有重要应用。然而,在其活性水平及其选择性方面,固定可以改变酶的功能。这些活动的这些变化是不可预测的,目前无法控制,但如果在基本级别完全理解可以为特定应用创造高度靶向酶系统提供机会。在该综述中,我们将突出二维纳米材料(2D NMS),特别是石墨烯及其衍生物的用途,作为固定材料以改变和控制各种酶的选择性和活性。由2D NMS上的固定酶获得的基本信息允许实施改进的固定策略,并有助于设计下一代纳米和宏观材料的酶固定化。我们希望本综述将突出裁缝酶活性和通过固定的选择性的可能性。

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