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基于荧光的新型非经典 G4-四链体样 DNA 生物传感器的开发,用于简便、特异性和超灵敏检测氟虫腈。

Development of novel fluorescence-based and label-free noncanonical G4-quadruplex-like DNA biosensor for facile, specific, and ultrasensitive detection of fipronil.

机构信息

Plant Molecular Biology and Biotechnology Research Center, Gyeongsang National University, Jinju, Gyeongnam 52828, Republic of Korea; Division of Life Science and Division of Applied Life Science (BK21 Four), Gyeongsang National University, Jinju, Gyeongnam 52828, Republic of Korea; Faculty of Biotechnology, Vietnam National University of Agriculture, Hanoi City 12400, Vietnam.

Plant Molecular Biology and Biotechnology Research Center, Gyeongsang National University, Jinju, Gyeongnam 52828, Republic of Korea; Division of Life Science and Division of Applied Life Science (BK21 Four), Gyeongsang National University, Jinju, Gyeongnam 52828, Republic of Korea.

出版信息

J Hazard Mater. 2022 Apr 5;427:127939. doi: 10.1016/j.jhazmat.2021.127939. Epub 2021 Nov 27.

DOI:10.1016/j.jhazmat.2021.127939
PMID:34893377
Abstract

Fipronil is a broad-spectrum insecticide widely used in agriculture and residential areas; its indiscriminate use leads to environmental pollution and poses health hazards. Early detection of fipronil is critical to prevent the deleterious effects. However, current insecticide analysis methods such as HPLC, LC/MS, and GC/MS are incompetent; they are costly, immobile, time-consuming, laborious, and need skilled technicians. Hence, a sensitive, specific, and cheap biosensor are essential to containing the contamination. Here, we designed two novel biosensors-the first design relied on fluorescent labeling/quenching, while the second sensor focused on label-free detection using Thioflavin T displacement. Altogether, we identified four candidate aptamers, predicted secondary structures, and performed 3D molecular modeling to predict the binding pocket of fipronil in FiPA6B aptamer. Furthermore, the aptameric sensors showed high sensitivity to fipronil of sub-ppb level LOD, attributed to stringent experimental design. The biosensors displayed high specificity against other phenylpyrazole insecticides and demonstrated robust sensitivity for fipronil in real samples like cabbage and cucumber. Notably, to the best of our knowledge, this is the first demonstration of noncanonical G4-quadruplex-like aptamer binding to fipronil, verified using CD spectroscopy. Such aptasensors possess considerable potential for real-time measurements of hazardous insecticides as point-of-care technology.

摘要

氟虫腈是一种广谱杀虫剂,广泛应用于农业和居民区;其无差别使用导致环境污染,并对健康造成危害。早期检测氟虫腈对于防止其有害影响至关重要。然而,目前的杀虫剂分析方法,如 HPLC、LC/MS 和 GC/MS,存在不足;它们成本高、不灵活、耗时、费力,并且需要熟练的技术人员。因此,需要一种灵敏、特异和廉价的生物传感器来遏制污染。在这里,我们设计了两种新型生物传感器——第一种设计依赖于荧光标记/猝灭,而第二种传感器则专注于使用硫代黄素 T 置换的无标记检测。总的来说,我们鉴定了四个候选适体,预测了二级结构,并进行了 3D 分子建模,以预测氟虫腈在 FiPA6B 适体中的结合口袋。此外,适体传感器对亚 ppb 级 LOD 的氟虫腈表现出高灵敏度,这归因于严格的实验设计。该生物传感器对其他苯并吡唑类杀虫剂具有高度特异性,并在实际样品(如卷心菜和黄瓜)中对氟虫腈表现出强大的灵敏度。值得注意的是,据我们所知,这是首次利用 CD 光谱学证明非典型 G4-四链体样适体与氟虫腈结合的例证。这种适体传感器具有作为即时检测技术实时测量危险杀虫剂的巨大潜力。

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