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由仿生低聚物介导的无机纳米颗粒聚集

Aggregation of inorganic nanoparticles mediated by biomimetic oligomers.

作者信息

Tigger-Zaborov Hagar, Maayan Galia

机构信息

Technion - Israel Institute of Technology, Haifa, Israel.

出版信息

Org Biomol Chem. 2015 Sep 14;13(34):8978-92. doi: 10.1039/c5ob01093d. Epub 2015 Jul 29.

Abstract

Assemblies of nanoparticles (NPs) have been broadly used for the construction of materials with unique spectroscopic and chiral properties for applications in various scientific disciplines such as sensing, bio-nanotechnology and medicine. Mediating the aggregation of NPs by synthetic biomimetic oligomers, namely, DNA, PNA, peptides and peptide mimics, rather than by small organic molecules has been shown to produce interesting supramolecular structures and enable the combination of the biocompatibility of the mediators and the spectroscopic properties of the NPs. Yet, the key to using this powerful approach for designing new functional materials is to understand the NPs aggregation patterns induced by biopolymers and biomimetic oligomers. Herein we describe the important developments in this field, from early studies to recent work with an emphasis on synthetic methods and tools for controlled assembly of metal NPs by biomimetic polymers and oligomers.

摘要

纳米颗粒(NPs)组装体已被广泛用于构建具有独特光谱和手性特性的材料,以应用于传感、生物纳米技术和医学等各种科学领域。已证明,通过合成仿生低聚物(即DNA、PNA、肽和肽模拟物)而非小分子介导NPs的聚集,可产生有趣的超分子结构,并实现介导剂的生物相容性与NPs光谱特性的结合。然而,将这种强大方法用于设计新型功能材料的关键在于了解生物聚合物和仿生低聚物诱导的NPs聚集模式。在此,我们描述该领域的重要进展,从早期研究到近期工作,重点是仿生聚合物和低聚物对金属NPs进行可控组装的合成方法和工具。

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