Zhi Xinpeng, Yang Qi, Zhang Xinghao, Zhang Hanbo, Gao Ya, Zhang Lulu, Tong Yuping, He Weiwei
School of Civil Engineering and Communication, North China University of Water Resources and Electric Power, Zhengzhou, Henan 450045, PR China; Key Laboratory of Micro-Nano Materials for Energy Storage and Conversion of Henan Province, Institute of Surface Micro and Nano Materials, College of Chemical and Materials Engineering, Xuchang University, Xuchang, Henan 461000, PR China.
Key Laboratory of Micro-Nano Materials for Energy Storage and Conversion of Henan Province, Institute of Surface Micro and Nano Materials, College of Chemical and Materials Engineering, Xuchang University, Xuchang, Henan 461000, PR China.
Food Chem. 2024 Jul 1;445:138788. doi: 10.1016/j.foodchem.2024.138788. Epub 2024 Feb 17.
Point-of-care testing (POCT) is promising for biodetection in home healthcare due to advantages of simplicity, rapidity, low cost, portability, high sensitivity and accuracy, and object-oriented POCT platform can be developed by nanozyme-based biosensing. However, designing high-performance nanozymes with targeted regulated catalytic activity remains challenging. Herein, advanced PtRhRuCu quaternary alloy nanozymes (QANs) were rationally designed and successfully synthesized. Cu atoms induced mechanisms of hydrogen peroxide (HO) activation and d-band center regulation, achieving high enhancement of peroxide (POD)-like activity and inhibition of oxidase (OXD)-like activity. Inspired by this, a smartphone-assisted colorimetric platform integrated with test strips was established for glucose detection of soft drinks, with a detection limit of 0.021 mM and a recovery rate of 97.87 to 103.36 %. This work not only provides a novel path for tuning specific enzyme-like activities of metal nanozymes, but also shows the potential feasibility for rational design of POCT sensors in actual samples.
即时检测(POCT)因其具有操作简单、检测快速、成本低廉、便于携带、灵敏度高和准确性高等优点,在家庭医疗保健中的生物检测方面颇具前景,并且基于纳米酶的生物传感技术可以开发面向目标的POCT平台。然而,设计具有靶向调控催化活性的高性能纳米酶仍然具有挑战性。在此,我们合理设计并成功合成了先进的PtRhRuCu四元合金纳米酶(QANs)。铜原子诱导了过氧化氢(HO)的活化机制和d带中心调控,实现了过氧化物酶(POD)样活性的高度增强和氧化酶(OXD)样活性的抑制。受此启发,我们建立了一个集成试纸条的智能手机辅助比色平台,用于软饮料中葡萄糖的检测,检测限为0.021 mM,回收率为97.87%至103.36%。这项工作不仅为调节金属纳米酶的特定类酶活性提供了一条新途径,还展示了在实际样品中合理设计POCT传感器的潜在可行性。