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Effect of size and curvature on the enzyme activity of bionanoconjugates

机译:尺寸和曲率对酶的影响bionanoconjugates活动

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摘要

Biotic-abiotic hybrids comprised of globular proteins and functional nanostructures with complementary and synergistic properties are central to a number of bionanotechnological applications. A comprehensive understanding of the effect of physicochemical properties of abiotic nanostructures on the biological activity of the bionanoconjugates is critical in the design of these bio-nano hybrids. In this study, using size and curvature-controlled gold nanoparticles as a model abiotic system, we investigated the effect of hydrodynamic diameter and surface curvature on the activity of a model enzyme, horseradish peroxidase (HRP), adsorbed on the surface of the nanostructures. In contrast with the previous studies, we have employed a novel class of gold superstructures (gold nanoparticles on spheres) to deconvolute the effects of size and curvature on the catalytic activity of the bionanoconjugates. This study improves our understanding of the bio/ nano interface and the design of bioinorganic hybrids with potential applications in biomimetic and bioenabled sensors, energy harvesting, optoelectronic components and devices, responsive and autonomous materials.
机译:Biotic-abiotic混合组成的球状蛋白质和功能纳米结构互补、相得益彰的属性许多bionanotechnological中心应用程序。的物理化学性质的影响非生物纳米结构的生物活性bionanoconjugates是至关重要的设计这些bio-nano混合动力车。使用大小和curvature-controlled黄金纳米粒子作为非生物系统模型,我们研究水力直径的影响和表面曲率的活动模型酶,辣根过氧化物酶(合),吸附纳米结构的表面。与先前的研究中,我们使用了一个小说类的黄金上层建筑(黄金在球体)deconvolute纳米颗粒尺寸和曲率对催化的影响bionanoconjugates的活动。提高我们理解生物/纳米接口和生物无机的混合动力汽车的设计仿生和潜在的应用bioenabled传感器、能量收获,光电组件和设备响应和自治的材料。

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