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利用α-突触核蛋白的固有无序蛋白将金纳米粒子高密度单层涂覆到多个基底上用于纳米应用。

High-Density Single-Layer Coating of Gold Nanoparticles onto Multiple Substrates by Using an Intrinsically Disordered Protein of α-Synuclein for Nanoapplications.

机构信息

School of Materials Science and Engineering, Gwangju Institute of Science and Technology , Gwangju 500-712, Korea.

Center for Nanoparticle Research, Institute for Basic Science , Seoul 151-747, Korea.

出版信息

ACS Appl Mater Interfaces. 2017 Mar 15;9(10):8519-8532. doi: 10.1021/acsami.6b16411. Epub 2017 Mar 1.

Abstract

Functional graffiti of nanoparticles onto target surface is an important issue in the development of nanodevices. A general strategy has been introduced here to decorate chemically diverse substrates with gold nanoparticles (AuNPs) in the form of a close-packed single layer by using an omni-adhesive protein of α-synuclein (αS) as conjugated with the particles. Since the adsorption was highly sensitive to pH, the amino acid sequence of αS exposed from the conjugates and its conformationally disordered state capable of exhibiting structural plasticity are considered to be responsible for the single-layer coating over diverse surfaces. Merited by the simple solution-based adsorption procedure, the particles have been imprinted to various geometric shapes in 2-D and physically inaccessible surfaces of 3-D objects. The αS-encapsulated AuNPs to form a high-density single-layer coat has been employed in the development of nonvolatile memory, fule-cell, solar-cell, and cell-culture platform, where the outlying αS has played versatile roles such as a dielectric layer for charge retention, a sacrificial layer to expose AuNPs for chemical catalysis, a reaction center for silicification, and biointerface for cell attachment, respectively. Multiple utilizations of the αS-based hybrid NPs, therefore, could offer great versatility to fabricate a variety of NP-integrated advanced materials which would serve as an indispensable component for widespread applications of high-performance nanodevices.

摘要

将纳米粒子功能化到目标表面是纳米器件发展中的一个重要问题。这里介绍了一种通用策略,通过使用α-突触核蛋白(αS)作为与粒子共轭的全黏附蛋白,将金纳米粒子(AuNPs)以紧密堆积的单层形式装饰在化学性质多样的基底上。由于吸附对 pH 非常敏感,因此被认为是从共轭物中暴露的αS 的氨基酸序列及其能够表现出结构可塑性的无序构象负责在各种表面上形成单层涂层。由于采用了简单的基于溶液的吸附程序,颗粒已被印模到 2D 中的各种几何形状和 3D 物体的物理上无法接近的表面上。形成高密度单层涂层的αS 包裹的 AuNPs 已被用于开发非易失性存储器、燃料电池、太阳能电池和细胞培养平台,其中外围的αS 分别充当了电荷保持的介电层、用于化学催化的牺牲层、硅化的反应中心和细胞附着的生物界面。因此,基于αS 的混合 NPs 的多种利用可以为制造各种集成了 NP 的先进材料提供极大的多功能性,这些材料将成为高性能纳米器件广泛应用不可或缺的组成部分。

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