Ding Qi, Yang Weimin, Xing Xinhe, Lin Hengwei, Xu Chuanlai, Xu Liguang, Li Si
International Joint Research Center for Photo-responsive Molecules and Materials, Jiangnan University, 214122, Wuxi, Jiangsu, P. R. China.
International Joint Research Laboratory for Biointerface and Biodetection, State Key Laboratory of Food Science and Technology, Jiangnan University, 214122, Wuxi, Jiangsu, P. R. China.
Angew Chem Int Ed Engl. 2024 Apr 22;63(17):e202401032. doi: 10.1002/anie.202401032. Epub 2024 Mar 21.
Chiral nanoscale enantiomers exhibit different biological effects in living systems. However, their chirality effect on the detection sensitivity for chiral biological targets still needs to be explored. Here, we discovered that Co can modulate the luminescence performance of L/D-glutathione (GSH)-modified copper nanoclusters (L/D-Cu NCs) and induce strong chiroptical activities as the asymmetric factor was enhanced 223-fold with their distribution regulating from the ultraviolet to visible region. One Co coordinated with two GSH molecules that modified on the surface of Cu NCs in the way of CoNO. On this basis, dual-modal chiral and luminescent signals of Co coordinated L/D-Cu NCs (L/D-Co-Cu NCs) were used to detect the chiral adenosine triphosphate (ATP) based on the competitive interaction between surficial GSH and ATP molecules with Co. The limits of detection of ATP obtained with fluorescence and circular dichroism intensity were 9.15 μM and 15.75 nM for L-Co-Cu NCs, and 5.35 μM and 4.69 nM for D-Co-Cu NCs. This demonstrated that selecting suitable chiral configurations of nanoprobes effectively enhances detection sensitivity. This study presents not only a novel method to modulate and enhance the chiroptical activity of nanomaterials but also a unique perspective of chirality effects on the detection performances for bio-targets.
手性纳米级对映体在生物系统中表现出不同的生物学效应。然而,它们对手性生物靶标的检测灵敏度的手性效应仍有待探索。在此,我们发现钴可以调节L/D-谷胱甘肽(GSH)修饰的铜纳米簇(L/D-Cu NCs)的发光性能,并随着不对称因子从紫外区域到可见区域的分布调节而增强223倍,从而诱导出强烈的圆二色性活性。一个钴以CoNO的方式与修饰在Cu NCs表面的两个GSH分子配位。在此基础上,基于表面GSH与ATP分子与钴之间的竞争相互作用,利用Co配位的L/D-Cu NCs(L/D-Co-Cu NCs)的双模式手性和发光信号检测手性三磷酸腺苷(ATP)。L-Co-Cu NCs通过荧光和圆二色性强度获得的ATP检测限分别为9.15 μM和15.75 nM,D-Co-Cu NCs为5.35 μM和4.69 nM。这表明选择合适的纳米探针手性构型可有效提高检测灵敏度。本研究不仅提出了一种调节和增强纳米材料圆二色性活性的新方法,而且为手性效应在生物靶标检测性能方面提供了独特的视角。