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生物分子/纳米材料杂化系统用于纳米生物技术。

Biomolecule/nanomaterial hybrid systems for nanobiotechnology.

机构信息

The Institute of Chemistry, The Hebrew University of Jerusalem, Jerusalem, Israel.

出版信息

Adv Exp Med Biol. 2012;733:1-16. doi: 10.1007/978-94-007-2555-3_1.

Abstract

The integration of biomolecules with metallic or semiconductor nanoparticles or carbon nanotubes yields new hybrid nanostructures of unique features that combine the properties of the biomolecules and of the nano-elements. These unique features of the hybrid biomolecule/nanoparticle systems provide the basis for the rapid development of the area of nanobiotechnology. Recent advances in the implementation of hybrid materials consisting of biomolecules and metallic nanoparticles or semiconductor quantum dots will be discussed. The following topics will be exemplified: (i) The electrical wiring of redox enzymes with electrodes by means of metallic nanoparticles or carbon nanotubes, and the application of the modified electrodes as amperometric biosensors or for the construction of biofuel cells. (ii) The biocatalytic growth of metallic nanoparticles as a means to construct optical or electrical sensors. (iii) The functionalization of semiconductor quantum dots with biomolecules and the application of the hybrid nanostructures for developing different optical sensors, including intracellular sensor systems. (iv) The use of biomolecule-metallic nanoparticle nanostructures as templates for growing metallic nanowires, and the construction of fuel-driven nano-transporters.

摘要

生物分子与金属或半导体纳米粒子或碳纳米管的集成产生了具有独特特性的新型混合纳米结构,结合了生物分子和纳米元素的特性。这些混合生物分子/纳米粒子系统的独特特性为纳米生物技术领域的快速发展提供了基础。本文将讨论由生物分子和金属纳米粒子或半导体量子点组成的混合材料的最新进展。以下主题将举例说明:(i)通过金属纳米粒子或碳纳米管将氧化还原酶与电极进行电连接,并将修饰后的电极用作安培生物传感器或用于构建生物燃料电池。(ii)作为构建光学或电传感器的一种手段,生物催化生长金属纳米粒子。(iii)生物分子对半导体量子点的功能化,以及混合纳米结构在开发不同光学传感器中的应用,包括细胞内传感器系统。(iv)将生物分子-金属纳米粒子纳米结构用作生长金属纳米线的模板,并构建燃料驱动的纳米输送器。

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