Yuan Ming, Lian Jiaqi, Han Xiaoning, Wen Jing, Gao Jingyu, Wang Liping, Zhang Feng
School of Chemistry and Life Sciences, Chifeng University, 1 Yingbin Road, Hongshan District, Chifeng, 024000, PR China.
Wenzhou Institute, University of Chinese Academy of Sciences, Wenzhou 325001, PR China; Oujiang Laboratory, Wenzhou, Zhejiang 325000, PR China.
Colloids Surf B Biointerfaces. 2022 Nov;219:112820. doi: 10.1016/j.colsurfb.2022.112820. Epub 2022 Sep 2.
The molecule-like electronic structure endows gold nanoclusters (AuNCs) a most intriguing property, fluorescence, thereby AuNCs offer a great potential for biomedical applications. Recent efforts to improve the fluorescence of AuNCs mainly focus on tailoring size, structure and chemical environments. Herein, with the help of molecular dynamics simulation, we designed tyrosine-containing peptide motifs as the reducing agents, protecting ligands to synthesis P (peptide)-AuNCs in one-step reaction, which was developed to real-time monitor the fluorescence evolution of P-AuNCs. P-AuNCs with a quantum yield of ∼ 18 % were synthesized and further demonstrated for multiple biomedical applications, such as sensing of temperature (10-55 ℃) and metal ions (with a limit of detection of 5 nM for Hg), as well as cell labeling and imaging. With the excellent biocompatibility, wide spectral range and potential capacity for bio-recognition, this study provides a useful one-step synthesis strategy for screening out peptide motifs to real-time modulate the optical properties of peptide-containing hybrid nanomaterials.
分子状电子结构赋予金纳米团簇(AuNCs)一种极其引人注目的性质——荧光,因此AuNCs在生物医学应用方面具有巨大潜力。近期提高AuNCs荧光的努力主要集中在调整尺寸、结构和化学环境上。在此,借助分子动力学模拟,我们设计了含酪氨酸的肽基序作为还原剂和保护配体,通过一步反应合成P(肽)-AuNCs,该反应被开发用于实时监测P-AuNCs的荧光演变。合成了量子产率约为18%的P-AuNCs,并进一步展示了其在多种生物医学应用中的性能,如温度(10 - 55℃)和金属离子传感(对Hg的检测限为5 nM),以及细胞标记和成像。凭借优异的生物相容性、宽光谱范围和潜在的生物识别能力,本研究提供了一种有用的一步合成策略,用于筛选肽基序以实时调节含肽杂化纳米材料的光学性质。