Faculty of Food Science and Technology, Thu Dau Mot University, Thu Dau Mot 590000, Vietnam.
Department of Chemistry, Can Tho University, Can Tho 900000, Vietnam.
Molecules. 2021 Sep 6;26(17):5422. doi: 10.3390/molecules26175422.
Computational approaches are employed to elucidate the binding mechanism and the SERS phenomenon of 6-mercaptopurine (6MP) adsorbed on the tetrahedral Au cluster as a simple model for a nanostructured gold surface. Computations are carried out in both vacuum and aqueous environments using a continuum model. In the gaseous phase and neutral conditions, interaction of 6MP with the gold cluster is mostly dominated by a covalent Au-S bond and partially stabilized by the Au⋅⋅⋅H-N coupling. However, in acidic solution, the nonconventional Au⋅⋅⋅H-S hydrogen-bond becomes the most favorable binding mode. The 6MP affinity for gold clusters decreases in the order of vacuum > neutral solution > acidic medium. During the adsorption, the energy gap of Au substantially declines, leading to an increase in its electrical conductivity, which can be converted to an electrical noise. Moreover, such interaction is likely a reversible process and triggered by either the low pH in sick tissues or the presence of cysteine residues in protein matrices. While N-H bending and stretching vibrations play major roles in the SERS phenomenon of 6MP on gold surfaces in neutral solution, the strongest enhancement in acidic environment is mostly due to an Au⋅⋅⋅H-S coupling, rather than an aromatic ring-gold surface π overlap as previously proposed.
计算方法被用于阐明 6-巯基嘌呤(6MP)在四面体 Au 团簇上的吸附的结合机制和 SERS 现象,该团簇作为纳米结构金表面的简单模型。使用连续体模型在真空和水相环境中进行计算。在气相和中性条件下,6MP 与金团簇的相互作用主要由共价 Au-S 键主导,部分由 Au⋅⋅⋅H-N 偶联稳定。然而,在酸性溶液中,非传统的 Au⋅⋅⋅H-S 氢键成为最有利的结合模式。6MP 对金团簇的亲和力按真空>中性溶液>酸性介质的顺序降低。在吸附过程中,Au 的能隙显著下降,导致其电导率增加,这可以转化为电噪声。此外,这种相互作用可能是一个可逆过程,由病态组织中的低 pH 值或蛋白质基质中半胱氨酸残基的存在触发。虽然在中性溶液中,N-H 弯曲和伸缩振动在 6MP 金表面的 SERS 现象中起主要作用,但在酸性环境中最强的增强主要归因于 Au⋅⋅⋅H-S 偶联,而不是以前提出的芳环-金表面π重叠。