Key Laboratory of Chemical Utilization of Plant Resources of Nanchang, College of Chemistry and Materials, College of Science, Jiangxi Agricultural University, Nanchang, 330045, China.
College of Food Science and Engineering, Jiangxi Agricultural University, Nanchang, 330045, China.
Anal Chim Acta. 2024 Feb 15;1290:342202. doi: 10.1016/j.aca.2024.342202. Epub 2024 Jan 1.
Lanthanide metal-organic frameworks (Ln-MOFs) are a kind of emerging crystalline porous materials with high fluorescence and easy-to-tunable properties, making them ideal for sensing applications. However, current Ln-MOFs based fluorescent probes are primarily single-emissive or fluorescence-quenched, which greatly limited the detection performances such as sensitivity, accuracy and repeatability, thereby hindering their applications in efficient target monitoring and related disease diagnosis. To address these issues, the reasonable design of Ln-MOFs equipped with dual fluorescence emissions and light-up mode is urgently needed for a high-performance biosensor.
A dual-emissive europium doped UiO-66 (Eu@UiO-66-NH-PMA)-based ratiometric fluorescent biosensing platform was constructed for highly sensitive and selective detection of the histidinemia biomarker-histidine (His). Eu@UiO-66-NH-PMA (pyromellitic acid abbreviated as PMA) was synthesized utilizing a post-synthetic modification method via coordination interactions between the free -COOH of UiO-66-NH-PMA and Eu, which exhibited characteristic peaks of broad ligand emission and sharp Eu emissions simultaneously. Considering that Cu had the excellent fluorescence quenching ability toward Eu and superior affinity with His, it was deliberately introduced into the Eu@UiO-66-NH-PMA, acting as active sites for target His responsiveness. The Eu@UiO-66-NH-PMA/Cu/His ternary competition system demonstrated a low detection limit of 74 nM, excellent selectivity and good anti-interference capability that allowed for sensitive analysis of His levels in milk and human serum samples.
Attributing to the superior luminescent properties, good stability and self-calibration capability of Eu@UiO-66-NH-PMA, the developed ratiometric light-up sensing platform enabled sensitive, selective and credible analysis of His in complex practical samples, which might provide an available tool for food nutrition guideline and diagnostic applications of His related diseases.
镧系金属有机骨架(Ln-MOFs)是一类新兴的晶体多孔材料,具有高荧光性和易于调谐的特性,使其成为传感应用的理想选择。然而,目前基于 Ln-MOFs 的荧光探针主要是单发射或荧光猝灭的,这极大地限制了它们在灵敏度、准确性和重复性等检测性能方面的表现,从而阻碍了它们在高效目标监测和相关疾病诊断中的应用。为了解决这些问题,迫切需要合理设计具有双荧光发射和点亮模式的 Ln-MOFs,以构建高性能的生物传感器。
构建了一种基于双发射铕掺杂 UiO-66(Eu@UiO-66-NH-PMA)的比率荧光生物传感平台,用于高灵敏度和选择性检测组氨酸血症生物标志物-组氨酸(His)。Eu@UiO-66-NH-PMA(简写为 PMA)是通过 UiO-66-NH-PMA 中的游离-COOH 与 Eu 的配位相互作用,利用后合成修饰方法合成的,同时显示出宽配体发射的特征峰和尖锐的 Eu 发射峰。考虑到 Cu 对 Eu 具有优异的荧光猝灭能力和与 His 的优越亲和力,故意将其引入到 Eu@UiO-66-NH-PMA 中,作为对目标 His 响应的活性位点。Eu@UiO-66-NH-PMA/Cu/His 三元竞争体系表现出 74 nM 的低检测限、优异的选择性和良好的抗干扰能力,可用于灵敏分析牛奶和人血清样品中的 His 水平。
由于 Eu@UiO-66-NH-PMA 具有优越的发光性能、良好的稳定性和自校准能力,所开发的比率点亮传感平台实现了对复杂实际样品中 His 的灵敏、选择性和可靠分析,为 His 相关疾病的食品营养指导方针和诊断应用提供了一种可行的工具。