Hebei Key Laboratory of Public Health Safety, Ministry of Education & College of Public Health, Hebei University, Baoding, 071002, China.
College of Food Science and Pharmaceutical Science, Xinjiang Agricultural University, Urumqi, Xinjiang, 830052, China.
J Nanobiotechnology. 2024 Nov 18;22(1):719. doi: 10.1186/s12951-024-03014-1.
Fluorescence nanomaterial sensors have exhibited excellent application potential in biothiols analyses. The fluorescence sensor arrays constructed from upconversion luminescence metal-organic frameworks nanocomposites (LMOFs) can provide impressive discrimination and exquisite fingerprinting capabilities for extremely similar analytes. Herein, an upconversion fluorescence sensor array based on LMOFs featuring UiO-type metal-organic frameworks-functionalized lanthanide-doped upconversion nanoparticles was proposed, wherein Cu can make the fluorescence quenching of LMOFs and preferentially bind biothiols to recover fluorescence in different degrees forming unique fingerprinting. The fluorescence sensor array displayed an excellent pattern recognition for five biothiols (glutathione, homocysteine, N-acetylcysteine, and L/D-cysteine) even at 50 µM by linear discriminant analysis, and the discernment for the enantiomers of L/D-cysteine, as well as the accurate identification (90.0% accuracy) of biothiols in food samples (tea beverage and white wine). Such fluorescence sensor array might provide a simple and efficient detection method for biothiols.
荧光纳米材料传感器在生物硫醇分析中表现出了优异的应用潜力。基于上转换发光金属-有机骨架纳米复合材料(LMOFs)构建的荧光传感器阵列可以为极其相似的分析物提供令人印象深刻的区分和精细的指纹识别能力。在此,提出了一种基于 LMOFs 的上转换荧光传感器阵列,该传感器阵列具有 UiO 型金属-有机骨架功能化镧系掺杂上转换纳米粒子,其中 Cu 可以使 LMOFs 的荧光猝灭,并优先与生物硫醇结合,在不同程度上恢复荧光,形成独特的指纹。通过线性判别分析,该荧光传感器阵列对五种生物硫醇(谷胱甘肽、同型半胱氨酸、N-乙酰半胱氨酸和 L/D-半胱氨酸)甚至在 50 μM 时表现出了出色的模式识别能力,并且可以区分 L/D-半胱氨酸的对映体,以及准确识别(准确率为 90.0%)食品样品(茶饮料和白葡萄酒)中的生物硫醇。这种荧光传感器阵列可能为生物硫醇的检测提供一种简单高效的方法。