Lyu Zhaoyuan, Ding Shichao, Tieu Peter, Fang Lingzhe, Li Xin, Li Tao, Pan Xiaoqing, Engelhard Mark H, Ruan Xiaofan, Du Dan, Li Suiqiong, Lin Yuehe
School of Mechanical and Material Engineering, Washington State University, Pullman, WA 99164, USA.
Department of Chemistry, University of California, Irvine, Irvine, CA 92697, USA.
Research (Wash D C). 2022 Aug 21;2022:9823290. doi: 10.34133/2022/9823290. eCollection 2022.
Point-of-care (POC) detection of herbicides is of great importance due to their impact on the environment and potential risks to human health. Here, we design a single-atomic site catalyst (SASC) with excellent peroxidase-like (POD-like) catalytic activity, which enhances the detection performance of corresponding lateral flow immunoassay (LFIA). The iron single-atomic site catalyst (Fe-SASC) is synthesized from hemin-doped ZIF-8, creating active sites that mimic the Fe active center coordination environment of natural enzyme and their functions. Due to its atomically dispersed iron active sites that result in maximum utilization of active metal atoms, the Fe-SASC exhibits superior POD-like activity, which has great potential to replace its natural counterparts. Also, the catalytic mechanism of Fe-SASC is systematically investigated. Utilizing its outstanding catalytic activity, the Fe-SASC is used as label to construct LFIA (Fe-SASC-LFIA) for herbicide detection. The 2,4-dichlorophenoxyacetic acid (2,4-D) is selected as a target here, since it is a commonly used herbicide as well as a biomarker for herbicide exposure evaluation. A linear detection range of 1-250 ng/mL with a low limit of detection (LOD) of 0.82 ng/mL has been achieved. Meanwhile, excellent specificity and selectivity towards 2,4-D have been obtained. The outstanding detection performance of the Fe-SASC-LFIA has also been demonstrated in the detection of human urine samples, indicating the practicability of this POC detection platform for analyzing the 2,4-D exposure level of a person. We believe this proposed Fe-SASC-LFIA has potential as a portable, rapid, and high-sensitive POC detection strategy for pesticide exposure evaluation.
由于除草剂对环境的影响及其对人类健康的潜在风险,即时检测(POC)除草剂具有重要意义。在此,我们设计了一种具有优异类过氧化物酶(POD-like)催化活性的单原子位点催化剂(SASC),它提高了相应的侧向流动免疫分析(LFIA)的检测性能。铁单原子位点催化剂(Fe-SASC)由血红素掺杂的ZIF-8合成,产生模仿天然酶的铁活性中心配位环境及其功能的活性位点。由于其原子分散的铁活性位点导致活性金属原子的最大利用,Fe-SASC表现出优异的类POD活性,具有很大的潜力取代天然对应物。此外,还系统研究了Fe-SASC的催化机制。利用其出色的催化活性,Fe-SASC用作标记物构建用于除草剂检测的LFIA(Fe-SASC-LFIA)。这里选择2,4-二氯苯氧乙酸(2,4-D)作为目标,因为它是一种常用除草剂,也是用于除草剂暴露评估的生物标志物。实现了1-250 ng/mL的线性检测范围,检测限(LOD)低至0.82 ng/mL。同时,对2,4-D具有优异的特异性和选择性。Fe-SASC-LFIA在人尿液样本检测中也表现出出色的检测性能,表明该POC检测平台用于分析人的2,4-D暴露水平的实用性。我们相信,这种提出的Fe-SASC-LFIA作为一种用于农药暴露评估的便携式、快速且高灵敏度的POC检测策略具有潜力。