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功能肽-金杂化纳米材料的分子相互作用理性设计。

Rational Design of Functional Peptide-Gold Hybrid Nanomaterials for Molecular Interactions.

机构信息

School of Biomedical Engineering, School of Ophthalmology & Optometry, Wenzhou Medical University, Xueyuan Road 270, Wenzhou, 325027, China.

Wenzhou Institute, University of Chinese Academy of Sciences, Xinsan Road 16, Wenzhou, 325001, China.

出版信息

Adv Mater. 2020 Sep;32(37):e2000866. doi: 10.1002/adma.202000866. Epub 2020 Aug 2.

Abstract

Gold nanoparticles (AuNPs) have been extensively used for decades in biosensing-related development due to outstanding optical properties. Peptides, as newly realized functional biomolecules, are promising candidates of replacing antibodies, receptors, and substrates for specific molecular interactions. Both peptides and AuNPs are robust and easily synthesized at relatively low cost. Hence, peptide-AuNP-based bio-nano-technological approaches have drawn increasing interest, especially in the field of molecular targeting, cell imaging, drug delivery, and therapy. Many excellent works in these areas have been reported: demonstrating novel ideas, exploring new targets, and facilitating advanced diagnostic and therapeutic technologies. Importantly, some of them also have been employed to address real practical problems, especially in remote and less privileged areas. This contribution focuses on the application of peptide-gold hybrid nanomaterials for various molecular interactions, especially in biosensing/diagnostics and cell targeting/imaging, as well as for the development of highly active antimicrobial/antifouling coating strategies. Rationally designed peptide-gold nanomaterials with functional properties are discussed along with future challenges and opportunities.

摘要

金纳米粒子(AuNPs)由于其出色的光学特性,在与生物传感相关的开发中已被广泛应用数十年。肽作为新发现的功能生物分子,是替代抗体、受体和特定分子相互作用底物的有前途的候选物。肽和 AuNPs 都具有很强的稳定性,并且可以以相对较低的成本合成。因此,基于肽-AuNP 的生物纳米技术方法引起了越来越多的关注,特别是在分子靶向、细胞成像、药物输送和治疗领域。在这些领域已经报道了许多优秀的工作:展示新的想法、探索新的目标以及促进先进的诊断和治疗技术。重要的是,其中一些也已被用于解决实际问题,特别是在偏远和欠发达地区。本贡献重点介绍了肽-金杂化纳米材料在各种分子相互作用中的应用,特别是在生物传感/诊断和细胞靶向/成像方面,以及用于开发高活性抗菌/抗污涂层策略。还讨论了具有功能特性的合理设计的肽-金纳米材料,以及未来的挑战和机遇。

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