School of Advanced Materials Science and Engineering, Sungkyunkwan University (SKKU), Suwon 16419, Republic of Korea.
Advanced Materials Technology Research Center, Sungkyunkwan University (SKKU), Suwon 16419, Republic of Korea.
ACS Appl Mater Interfaces. 2021 Sep 15;13(36):42311-42328. doi: 10.1021/acsami.1c10436. Epub 2021 Aug 31.
Gold nanoparticles (AuNPs) are used in various biological applications because of their small surface area-to-volume ratios, ease of synthesis and modification, low toxicity, and unique optical properties. These properties can vary significantly with changes in AuNP size, shape, composition, and arrangement. Thus, the stabilization of AuNPs is crucial to preserve the properties required for biological applications. In recent years, various polymer-based physical and chemical methods have been extensively used for AuNP stabilization. However, a new stabilization approach using biomolecules has recently attracted considerable attention. Biomolecules such as DNA, RNA, peptides, and proteins are representative of the biomoieties that can functionalize AuNPs. According to several studies, biomolecules can stabilize AuNPs in biological media; in addition, AuNP-conjugated biomolecules can retain certain biological functions. Furthermore, the presence of biomolecules on AuNPs significantly enhances their biocompatibility. This review provides a representative overview of AuNP functionalization using various biomolecules. The strategies and mechanisms of AuNP functionalization using biomolecules are comprehensively discussed in the context of various biological fields.
金纳米粒子(AuNPs)由于其小的表面积与体积比、易于合成和修饰、低毒性以及独特的光学性质,被广泛应用于各种生物领域。这些性质会随着 AuNP 尺寸、形状、组成和排列的变化而发生显著变化。因此,AuNPs 的稳定化对于保持生物应用所需的性质至关重要。近年来,各种基于聚合物的物理和化学方法已被广泛用于 AuNP 的稳定化。然而,最近一种使用生物分子的新稳定化方法引起了广泛关注。生物分子如 DNA、RNA、肽和蛋白质是可以功能化 AuNPs 的生物单元的代表。根据多项研究,生物分子可以在生物介质中稳定 AuNPs;此外,AuNP 偶联的生物分子可以保留某些生物功能。此外,生物分子在 AuNPs 上的存在显著提高了其生物相容性。本综述提供了使用各种生物分子对 AuNP 功能化的代表性概述。根据各种生物领域的情况,全面讨论了使用生物分子对 AuNP 进行功能化的策略和机制。