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胶体纳米粒子的表面工程。

Surface engineering of colloidal nanoparticles.

机构信息

Department of Urology, Institute of Molecular Medicine, Shanghai Key Laboratory for Nucleic Acid Chemistry and Nanomedicine, Renji Hospital, School of Medicine, Shanghai Jiao Tong University, Shanghai, 200127, China.

School of Chemistry and Chemical Engineering, Zhangjiang Institute for Advanced Study, Frontiers Science Center for Transformative Molecules and National Center for Translational Medicine, Shanghai Jiao Tong University, Shanghai, 200240, China.

出版信息

Mater Horiz. 2023 Apr 3;10(4):1185-1209. doi: 10.1039/d2mh01512a.

Abstract

Synthesis of engineered colloidal nanoparticles (NPs) with delicate surface characteristics leads to well-defined physicochemical properties and contributes to multifunctional applications. Surface engineering of colloidal NPs can improve their stability in diverse solvents by inhibiting the interparticle attractive forces, thus providing a prerequisite for further particle manipulation, fabrication of the following materials and biological applications. During the last decades, surface engineering methods for colloidal NPs have been well-developed by numerous researchers. However, accurate control of surface properties is still an important topic. The emerging DNA/protein nanotechnology offers additional possibility of surface modification of NPs and programmable particle self-assembly. Here, we first briefly review the recent progress in surface engineering of colloidal NPs, focusing on the improved stability by grafting suitable small molecules, polymers or biological macromolecules. We then present the practical strategies for nucleic acid surface encoding of NPs and subsequent programmable assembly. Various exciting applications of these unique materials are summarized with a specific focus on the cellular uptake, bio-toxicity, imaging and diagnosis of colloidal NPs . With the growing interest in colloidal NPs in nano-biological research, we expect that this review can play an instructive role in engineering the surface properties for desired applications.

摘要

合成具有精细表面特性的工程胶体纳米粒子 (NPs) 可导致明确的物理化学性质,并有助于多功能应用。胶体 NPs 的表面工程可以通过抑制颗粒间的吸引力来提高它们在不同溶剂中的稳定性,从而为进一步的颗粒操纵、以下材料的制造和生物应用提供前提条件。在过去的几十年中,许多研究人员已经很好地开发了胶体 NPs 的表面工程方法。然而,对表面性质的精确控制仍然是一个重要的课题。新兴的 DNA/蛋白质纳米技术为 NPs 的表面修饰和可编程粒子自组装提供了额外的可能性。在这里,我们首先简要回顾胶体 NPs 的表面工程的最新进展,重点介绍通过接枝合适的小分子、聚合物或生物大分子来提高稳定性。然后,我们介绍了 NP 表面核酸编码和随后的可编程组装的实用策略。总结了这些独特材料的各种令人兴奋的应用,特别关注胶体 NPs 的细胞摄取、生物毒性、成像和诊断。随着人们对纳米生物学研究中胶体 NPs 的兴趣日益浓厚,我们期望本综述能够在工程表面性质以满足预期应用方面发挥指导作用。

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