School of Agricultural Engineering, Jiangsu University, Zhenjiang 212013, China.
Institute of Green Chemistry and Chemical Technology, School of Chemistry and Chemical Engineering, Jiangsu University, Zhenjiang 212013, China.
Anal Chem. 2023 Mar 14;95(10):4776-4785. doi: 10.1021/acs.analchem.3c00008. Epub 2023 Mar 2.
Peroxidase-mimetic materials are intensively applied to establish multienzyme systems because of their attractive merits. However, almost all of the nanozymes explored exhibit catalytic capacity only under acidic conditions. The pH mismatch between peroxidase mimics in acidic environments and bioenzymes under neutral conditions significantly restricts the development of enzyme-nanozyme catalytic systems especially for biochemical sensing. To solve this problem, here amorphous Fe-containing phosphotungstates (Fe-PTs) featuring high peroxidase activity at neutral pH were explored to fabricate portable multienzyme biosensors for pesticide detection. The strong attraction of negatively charged Fe-PTs to positively charged substrates as well as the accelerated regeneration of Fe by the Fe/W bimetallic redox couples was demonstrated to play important roles in endowing the material with peroxidase-like activity in physiological environments. Consequently, integrating the developed Fe-PTs with acetylcholinesterase and choline oxidase led to an enzyme-nanozyme tandem platform with good catalytic efficiency at neutral pH for organophosphorus pesticide response. Furthermore, they were immobilized onto common medical swabs to fabricate portable sensors for paraoxon detection conveniently based on smartphone sensing, showing excellent sensitivity, good anti-interference capacity, and low detection limit (0.28 ng/mL). Our contribution expands the horizon of acquiring peroxidase activity at neutral pH, and it will also open avenues to construct portable and effective biosensors for pesticides and other analytes.
过氧化物酶模拟材料因其吸引人的优点而被广泛应用于建立多酶体系。然而,几乎所有探索过的纳米酶都只在酸性条件下表现出催化能力。过氧化物酶模拟物在酸性环境中和生物酶在中性条件下的 pH 值不匹配,极大地限制了酶-纳米酶催化体系的发展,特别是对于生化传感。为了解决这个问题,本研究探索了在中性 pH 下具有高过氧化物酶活性的无定形含 Fe 的磷钨酸盐 (Fe-PTs),以构建用于农药检测的便携式多酶生物传感器。带正电荷的底物对带负电荷的 Fe-PTs 的强烈吸引力以及 Fe/W 双金属氧化还原对加速 Fe 的再生被证明在赋予该材料在生理环境中具有过氧化物酶样活性方面发挥了重要作用。因此,将开发的 Fe-PTs 与乙酰胆碱酯酶和胆碱氧化酶集成在一起,形成了一种在中性 pH 下对有机磷农药有良好催化效率的酶-纳米酶串联平台。此外,它们被固定在普通的医用棉签上,方便地基于智能手机传感来制备用于对氧磷检测的便携式传感器,具有出色的灵敏度、良好的抗干扰能力和低检测限(0.28 ng/mL)。本研究的贡献扩展了在中性 pH 下获得过氧化物酶活性的视野,也为构建用于农药和其他分析物的便携式、有效的生物传感器开辟了道路。