Ministry of Education Key Laboratory for Analytical Science of Food Safety and Biology, Fujian Provincial Key Laboratory of Analysis and Detection for Food Safety, Eel Farming and Processing, Fuzhou University, Fuzhou, Fujian, 350108, PR China.
Faculty of Pharmacy, Fujian Medical University, Fuzhou, 350108, China.
Talanta. 2022 Jan 15;237:122961. doi: 10.1016/j.talanta.2021.122961. Epub 2021 Oct 14.
As a popular controllable-released carrier, intelligent hydrogels are often used in drug delivery and disease therapeutics. Meanwhile, benefit from the mimic-enzyme activity performance, Fe-N-C nanozymes have been widely used in sensing and analysis. However, the combination of intelligent hydrogels with specific degradability and Fe-N-C nanozymes with enhanced activity in one system to achieve controllable and sensitive detection is rare. Herein, we combine intelligent hydrogel with mimic peroxidase activity enhanced Fe-N-C nanozymes to construct a ratiometric fluorescence probe for sensitive detection of hyaluronidase (HAase). The modification of copper ions has been proved to enhance the mimic enzyme activity of Fe-N-C nanozymes greatly. Cu modified Fe-N-C nanozymes were embedded in hyaluronic acid hydrogel. In the presence of HAase, the HA hydrogel structure was hydrolyzed and released Cu-Fe-N-C nanozymes gradually. The released Cu-Fe-N-C nanozymes are used to catalyze the hydrogen peroxide system so that o-phenylenediamine is oxidized to orange fluorescent 2, 3-diaminophenolazine (DAP). Due to the electrostatic interaction, the fluorescence resonance energy transfer can occur between the negatively charged copper nanoclusters emitted by 430 nm and the positively charged DAP emitted by 560 nm. The activity of HAase was monitored according to the ratio of fluorescence intensity at 560 nm and 430 nm (F560/F430). The linear range of this method is 0-10.0 U/ml and the detection limit is 0.43 U/mL (S/N = 3). This strategy has been further applied to biological samples successfully.
作为一种流行的可控释放载体,智能水凝胶常用于药物输送和疾病治疗。同时,得益于模拟酶活性性能,Fe-N-C 纳米酶已广泛应用于传感和分析。然而,将具有特定降解性的智能水凝胶与活性增强的 Fe-N-C 纳米酶结合在一个体系中,以实现可控和灵敏的检测,这种情况很少见。在这里,我们将智能水凝胶与模拟过氧化物酶活性增强的 Fe-N-C 纳米酶结合,构建了用于灵敏检测透明质酸酶(HAase)的比率荧光探针。已经证明铜离子的修饰可以大大增强 Fe-N-C 纳米酶的模拟酶活性。Cu 修饰的 Fe-N-C 纳米酶被嵌入透明质酸水凝胶中。在 HAase 存在下,HA 水凝胶结构被水解,并逐渐释放出 Cu-Fe-N-C 纳米酶。释放的 Cu-Fe-N-C 纳米酶用于催化过氧化氢体系,使邻苯二胺被氧化为橙色荧光 2,3-二氨基吩嗪(DAP)。由于静电相互作用,在 430nm 发射的带负电荷的铜纳米簇和 560nm 发射的带正电荷的 DAP 之间可以发生荧光共振能量转移。根据 560nm 和 430nm 处荧光强度的比值(F560/F430)来监测 HAase 的活性。该方法的线性范围为 0-10.0 U/ml,检测限为 0.43 U/ml(S/N=3)。该策略已成功进一步应用于生物样品。