Cao Rui, Zhang Mengyu, Tang Wen, Wu Jing, Luo Yang, Chen Yi, Liu Zhaodi, Hao Fuying, Sheng Liangquan, Xu Huajie
School of Chemistry and Materials Engineering, Fuyang Normal University, Fuyang, Anhui 236037, PR China.
School of Chemistry and Materials Engineering, Fuyang Normal University, Fuyang, Anhui 236037, PR China.
Spectrochim Acta A Mol Biomol Spectrosc. 2024 Apr 5;310:123964. doi: 10.1016/j.saa.2024.123964. Epub 2024 Jan 24.
In this work, a stable ratiometric nanofluorescent probe for the detection of 2,6-dipicolinic acid (DPA), a Bacillus anthracis biomarker, was developed based on confinement-induced emission enhancement of cationic styrylpyridine salt derivative L in MCM-22 molecular sieve pores. The cationic L and the lanthanide Tb were loaded into the pores of the molecular sieve by electrostatic interaction with the negatively charged AlO tetrahedron unit, and L exhibited enhanced red fluorescence emission as a stable fluorescence reference mark in the nanoprobe platform due to the restricted molecular torsion of L in the pores of MCM-22. At the same time, the characteristic green fluorescence emission of Tb can be excited by energy transfer due to the "antenna effect" of DPA. The prepared Tb-L@MCM-22 nanoprobe showed specific selectivity and stable fluorescence ratiometric detection of DPA in tap water, lake water, bovine serum and actual bacterial spores. Benefiting from the confinement-induced fluorescence enhancement effect of L in the MCM-22 molecular sieve pores, the obtained Tb-L@MCM-22 can provide a stable reference signal for the fluorescence ratiometric detection of DPA with a limit of detection (LOD) of 78.6 nM and 1.310 × 10 spores per mL. More importantly, combining of the Tb-L@MCM-22 based DPA detection test strips with a smartphone app demonstrated a stable, convenient and rapid method for detecting of anthrax biomarkers.
在本研究中,基于阳离子苯乙烯基吡啶盐衍生物L在MCM-22分子筛孔道中的限域诱导发射增强效应,开发了一种用于检测炭疽芽孢杆菌生物标志物2,6-二吡啶甲酸(DPA)的稳定比率型纳米荧光探针。阳离子L和镧系元素Tb通过与带负电荷的AlO四面体单元的静电相互作用被负载到分子筛孔道中,并且由于L在MCM-22孔道中分子扭转受限,L在纳米探针平台中表现出增强的红色荧光发射,作为稳定的荧光参考标记。同时,由于DPA的“天线效应”,Tb的特征绿色荧光发射可通过能量转移被激发。所制备的Tb-L@MCM-22纳米探针在自来水、湖水、牛血清和实际细菌孢子中对DPA表现出特异性选择性和稳定的荧光比率检测。受益于L在MCM-22分子筛孔道中的限域诱导荧光增强效应,所获得的Tb-L@MCM-22可为DPA的荧光比率检测提供稳定的参考信号,检测限为78.6 nM和每毫升1.310×10个孢子。更重要的是,基于Tb-L@MCM-22的DPA检测试纸条与智能手机应用程序相结合,展示了一种稳定、便捷、快速的炭疽生物标志物检测方法。