School of the Environment and Safety Engineering and Collaborative Innovation Center of Technology and Material of Water Treatment, Jiangsu University, Zhenjiang 212013, P. R. China.
Guangzhou Baiyun Airport Customs Comprehensive Technical Service Center, Guangzhou Baiyun Airport Customs District People's Republic of China, Guangzhou 510470, P. R. China.
Inorg Chem. 2024 Sep 2;63(35):16442-16450. doi: 10.1021/acs.inorgchem.4c02716. Epub 2024 Aug 22.
Colorimetry based on the bioenzyme inhibition strategy holds promising application prospects in the field of organophosphorus pesticide (OPs) detection. However, overcoming the challenges of the high cost and low stability of bioenzymes remains crucial. In this study, we successfully synthesized a peroxidase vanadium-based metal-organic framework (MOF) nanozyme named MIL-88B(V) and employed its mediated bioenzyme-free colorimetric strategy for direct OPs detection. The experimental results demonstrated that MIL-88B(V) exhibited a remarkable affinity and a remarkable catalytic rate. When the OPs target is added, it can be anchored on the MOF surface through a V-O-P bond, effectively inhibiting the MOF's activity. Subsequently, leveraging the advantages of smartphones such as convenience, speed, and sensitivity, we developed a paper sensor integrated into a smartphone for efficient OPs detection. The as-designed nanozyme-based colorimetric assay and paper sensor presented herein offer notable advantages, including affordability, speed, stability, wide adaptability, low cost, and accuracy in detecting OPs, thus providing a versatile and promising analytical approach for real sample analysis and allowing new applications of V-based MOF nanozymes.
基于生物酶抑制策略的比色法在有机磷农药(OPs)检测领域具有广阔的应用前景。然而,克服生物酶成本高和稳定性低的挑战仍然至关重要。在本研究中,我们成功合成了一种过氧化物酶钒基金属有机骨架(MOF)纳米酶,命名为 MIL-88B(V),并采用其介导的无生物酶比色策略直接检测 OPs。实验结果表明,MIL-88B(V) 表现出显著的亲和力和显著的催化速率。当添加 OPs 靶标时,它可以通过 V-O-P 键锚定在 MOF 表面,有效地抑制 MOF 的活性。随后,利用智能手机的便利性、速度和灵敏度等优势,我们开发了一种集成在智能手机中的纸传感器,用于高效检测 OPs。本设计的基于纳米酶的比色分析和纸传感器具有显著的优点,包括价格合理、速度快、稳定性好、适应性广、成本低、检测 OPs 的准确性高,从而为实际样品分析提供了一种通用且有前途的分析方法,并为基于 V 的 MOF 纳米酶的新应用提供了可能。