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首页> 外文期刊>The Science of the Total Environment >A sensitive fluorometric bio-barcodes immunoassay for detection of triazophos residue in agricultural products and water samples by iterative cycles of DNA-RNA hybridization and dissociation of fluorophores by Ribonuclease H
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A sensitive fluorometric bio-barcodes immunoassay for detection of triazophos residue in agricultural products and water samples by iterative cycles of DNA-RNA hybridization and dissociation of fluorophores by Ribonuclease H

机译:敏感的荧光生物条形码免疫测定法,用于通过重复循环DNA-RNA杂交和核糖核酸酶H解离荧光来检测农产品和水样中的三唑磷残留

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摘要

Although the toxicity of triazophos is high and it has been pulled from the market in many countries; it is still widely used and frequently detected in agricultural products. While conventional analyses have been routinely used for the quantification and monitoring of triazophos residues, those for detecting low residual levels are deemed necessary. Therefore, we developed a novel and sensitive fluorometric signal amplification immunoassay employing bio-barcodes for the quantitative analysis of triazophos residues in foodstuffs and surface water. Herein, monoclonal antibodies (mAbs) attached to gold nanopatticles (AuNPs) were coated with DNA oligonucleotides (used as a signal generator), and a complementary fluorogenic RNA was used for signal amplification. The system generated detection signals through DNA-RNA hybridization and subsequent dissociation of fluorophores by Ribonuclease H (RNase H). It has to be noted that RNase H can only disintegrate the RNA in DNA-RNA duplex, but not cleave single or double-stranded DNA. Hence, with iterative cycles of DNA-RNA hybridization, sufficient strong signal was obtained for reliable detection of residues. Furthermore, this method enables quantitative detection of triazophos residues through fluorescence intensity measurements. The competitive immunoassay shows a wide linear range of 0.01-100 ng/mL with a limit of detection (LOD) of 0.0032 ng/mL. The assay substantially meets the demand for the low residue detection of triazophos residues in agricultural products and water samples. Accuracy (expressed as spiked recovery %) and coefficient of variation (CV) were ranged from 73.4% to 116% and 7.04% to 17.4%, respectively. The proposed bio-barcodes immunoassay has the advantages of being stable, reproducible, and reliable for residue detection. In sum, the present study provides a novel approach for detection of small molecules in various sample matrices.
机译:尽管三唑磷的毒性很高,并且已在许多国家从市场上撤出;它仍然被广泛使用并经常在农产品中被检测到。尽管常规分析已常规用于定量和监测三唑磷残留,但仍认为检测低残留水平的分析是必要的。因此,我们开发了一种新颖且灵敏的荧光信号放大免疫测定法,该方法使用生物条形码定量分析食品和地表水中的三唑磷残留。在本文中,附着在金纳米颗粒(AuNPs)上的单克隆抗体(mAb)涂有DNA寡核苷酸(用作信号发生器),互补的荧光RNA用于信号放大。该系统通过DNA-RNA杂交以及随后的核糖核酸酶H(RNase H)解离荧光团产生检测信号。必须指出的是,RNase H只能使DNA-RNA双链体中的RNA分解,而不能裂解单链或双链DNA。因此,通过DNA-RNA杂交的迭代循环,可以获得足够强的信号来可靠地检测残基。此外,该方法能够通过荧光强度测量定量检测三唑磷残留。竞争性免疫测定法显示0.01-100 ng / mL的宽线性范围,检测极限(LOD)为0.0032 ng / mL。该测定法基本满足了农产品和水样中三唑磷残留量低残留检测的需求。准确性(表示为加标回收率%)和变异系数(CV)分别为73.4%至116%和7.04%至17.4%。所提出的生物条形码免疫测定法具有稳定,可重复和对残留物检测可靠的优点。总而言之,本研究提供了一种检测各种样品基质中小分子的新颖方法。

著录项

  • 来源
    《The Science of the Total Environment》 |2020年第may15期|137268.1-137268.9|共9页
  • 作者单位

    College of Life Sciences YanTai University Yantai 264005 China Key Laboratory of Agro-product Quality and Food Safety Institute of Quality Standard &Testing Technology for Agro-Products Chinses Academy of Agricultural Science Beijing 100081 China;

    Key Laboratory of Agro-product Quality and Food Safety Institute of Quality Standard &Testing Technology for Agro-Products Chinses Academy of Agricultural Science Beijing 100081 China;

    Department of Pharmacology Faculty of Veterinary Medicine Cairo University 12211 Ciza Egypt Department of Medical Pharmacology Medical Faculty Ataturk University 25240 Erzurum Turkey;

    Department of Medical Pharmacology Medical Faculty Ataturk University 25240 Erzurum Turkey;

    College of Life Sciences YanTai University Yantai 264005 China;

    Key Laboratory of Agro-product Quality and Food Safety Institute of Quality Standard &Testing Technology for Agro-Products Chinses Academy of Agricultural Science Beijing 100081 China Department of Entomology & Nematology and the UC Davis Comprehensive Cancer Center Davis CA 95616 USA;

    Department of Entomology & Nematology and the UC Davis Comprehensive Cancer Center Davis CA 95616 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Competitive immunoassay; Amplification strategy; Organophosphate pesticides; Fluorescence; Matrix effect;

    机译:竞争性免疫测定;放大策略;有机磷农药;荧光;矩阵效果;

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