Chemical Engineering Department , Howard University , 2366 Sixth Street , Washington , District of Columbia 20059 , United States.
Network Information Center , Xiamen University of Technology , 600 Ligong Road , Jimei District, Xiamen 361024 , Fujian Province, China.
Langmuir. 2019 Apr 9;35(14):5029-5036. doi: 10.1021/acs.langmuir.8b03951. Epub 2019 Mar 26.
Functionalized gold nanoparticles have critical applications in biodetection with surface-enhanced Raman spectrum and drug delivery. In this study, reactive force field molecular dynamics simulations were performed to study gold nanoparticles, which are modified with different short-chain peptides consisting of amino acid residues of cysteine and glycine in different grafting densities in the aqueous environment. Our study showed slight facet-dependent peptide adsorption on a gold nanoparticle with the 3 nm core diameter. Peptide chains prefer to adsorb on the Au(111) facet compared to those on other facets of Au(100) and Au(110). In addition to the stable thiol interaction with gold nanoparticle surfaces, polarizable oxygen and nitrogen atoms show strong interactions with the gold surface and polarize the gold nanoparticle surfaces with an overall positive charge. Charges of gold atoms vary according to their contacts with peptide atoms and lattice positions. However, at the outmost peptide layer, the whole functionalized Au nanoparticles exhibit overall negative electrostatic potential due to the grafted peptides. Moreover, simulations show that thiol groups can be deprotonated and subsequently protons can be transferred to water molecules and carboxyl groups.
功能化金纳米粒子在基于表面增强拉曼光谱的生物检测和药物输送方面具有重要的应用。在这项研究中,我们采用基于力场的分子动力学模拟方法,研究了在水相环境中,不同接枝密度的含半胱氨酸和甘氨酸残基的短肽修饰的金纳米粒子。我们的研究表明,具有 3nm 核直径的金纳米粒子表面的肽吸附具有轻微的各向异性。与 Au(100)和 Au(110)的其他面相比,肽链更倾向于吸附在 Au(111)面上。除了与金纳米粒子表面的稳定硫醇相互作用外,可极化的氧和氮原子与金表面具有很强的相互作用,并使金纳米粒子表面带有整体正电荷。金原子的电荷根据其与肽原子的接触和晶格位置而变化。然而,在最外层的肽层,由于接枝的肽,整个功能化的 Au 纳米粒子表现出整体的负静电势能。此外,模拟表明,巯基可以去质子化,随后质子可以转移到水分子和羧基上。