State Key Laboratory of Virology, Wuhan Institute of Virology, Chinese Academy of Sciences, Wuhan 430071, PR China.
Nanoscale. 2018 Oct 21;10(39):18606-18612. doi: 10.1039/c8nr06862c. Epub 2018 Sep 27.
Chiral recognition of enantiomers is fundamentally important. In this study, a novel strategy for the chiral discrimination of glucose enantiomers was constructed based on the hydrogen peroxide (HO)-mediated generation of a carbon dots-gold nanoparticle (C-dots@Au NP) complex independent of surface modification with chiral ligands. HO is essential as a reductant to promote the growth of Au NPs from gold salts. Besides, the modification of C-dots with sulfhydryl groups is necessary for its anchoring on the surface of Au NPs. Therefore, in the presence of HO, the C-dots@Au NP complex can be self-generated from a simple mixture containing C-dots and Au salts. It is worth noting that glucose oxidase can selectively catalyze d-glucose but not l-glucose to generate HO. In this regard, the chiral recognition process can trigger the formation of the C-dots@Au NP complex. Furthermore, based on the production of reddish Au NPs and the reduction of C-dot fluorescence quenched by Au NPs, the resultant C-dots@Au NP complex enables achieving the chiral discrimination of glucose enantiomers by combining colorimetric and fluorometric assays. Compared with the conventional approaches that use chiral ligands to decorate NPs, the generation of the chiral-responsive C-dots@Au NP complex is much simpler and faster. Upon combination with specific enzymatic reactions that produce a reductive product, the current strategy provides a general approach for the identification of chiral enantiomers.
对映异构体的手性识别至关重要。在这项研究中,构建了一种基于过氧化氢(HO)介导的碳点-金纳米粒子(C-dots@Au NP)复合物生成的新型葡萄糖对映异构体手性识别策略,该复合物无需通过手性配体进行表面修饰。HO 作为还原剂对于促进金盐中 Au NPs 的生长是必不可少的。此外,巯基修饰的 C-dots 对于其在 Au NPs 表面的锚定是必要的。因此,在 HO 的存在下,C-dots@Au NP 复合物可以从简单的包含 C-dots 和 Au 盐的混合物中自生成。值得注意的是,葡萄糖氧化酶可以选择性地催化 d-葡萄糖但不能催化 l-葡萄糖生成 HO。在这种情况下,手性识别过程可以触发 C-dots@Au NP 复合物的形成。此外,基于产生的红色 Au NPs 和被 Au NPs 猝灭的 C-dot 荧光的减少,所得的 C-dots@Au NP 复合物通过比色和荧光测定实现了葡萄糖对映异构体的手性识别。与使用手性配体修饰 NPs 的传统方法相比,手性响应的 C-dots@Au NP 复合物的生成要简单和快速得多。通过与产生还原产物的特定酶反应结合,该策略为手性对映异构体的鉴定提供了一种通用方法。