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Cell-free bioassay for measurement of dioxins based on fluorescence enhancement of fluorescein isothiocyanate-labeled DNA probe

机译:基于异硫氰酸荧光素标记的DNA探针的荧光增强的无细胞生物测定二恶英含量的方法

摘要

This study aims to develop a rapid and sensitive cell-free bioassay of dioxins. It is known that dioxin ligand can bind heterodimeric aryl hydrocarbon receptor (AhR) and triggers the formation of the complex of dioxin-AhR, AhR nuclear translocator (ARNT), and dioxin-responsive element (DRE) region of the DNA. The hypothesis of the proposed method is that if FITC were labeled at the DRE sequence, its fluorescence intensity would be enhanced when the complex forms because the interaction interface of the binding components (AhR, ARNT, and DRE) creates a rather hydrophobic condition that is in favor of FITC emission. Effects of modification site of FITC on the DNA probes on binding efficiency between the complex components and fluorescence emission enhancement were evaluated by surface plasmon resonance and fluorescence analysis, respectively. Results showed that the labeling site at the second base at the 5' end apart from the core region (5'-TNGCGTG-3') of DRE did not obviously interfere with the binding between the DNA probe and dioxin-AhR/ARNT hybrid but presented significant fluorescence emission enhancement. 2,3,7,8-Tetrachlorodibenzo-p-dioxin (TCDD) was used as the typical toxin in this study. The method had a linear range of 1- 100 pM, with detection limit of 0.1 pM (0.64 fg/assay) and coefficient of variation of 5.6% (n = 10, 50 pM TCDD in transformed cytosol). The whole detection cycle was similar to 4 h. The method was also used to estimate the toxic equivalents (TEQ) of 1,2,3,7,8-pentachlorodibenzo-p-dioxin (PeCDD) and 1,2,3,4,7,8-hexachlorodibenzo-p-dioxin ( HxCDD). Measurement of TEQs of the mixture of TCDD, PeCDD, and HxCDD were highly consistent with the predicted data. The average recovery using fly ash extract was similar to 93%.
机译:这项研究旨在开发一种快速,灵敏的二恶英无细胞生物测定法。已知二恶英配体可以结合异二聚芳基烃受体(AhR)并触发DNA的二恶英-AhR,AhR核转运子(ARNT)和二恶英响应元件(DRE)区域的复合物的形成。提出的方法的假设是,如果在DRE序列上标记FITC,则在形成复合物时会增强其荧光强度,因为结合成分(AhR,ARNT和DRE)的相互作用界面会形成相当疏水的状态,即支持FITC排放。通过表面等离振子共振和荧光分析分别评估了FITC在DNA探针上的修饰位点对复杂成分之间的结合效率和荧光发射增强的影响。结果表明,与DRE核心区域(5'-TNGCGTG-3')分开的5'端第二个碱基处的标记位点不会明显干扰DNA探针与二恶英-AhR / ARNT杂种之间的结合,但呈现出显着的荧光发射增强。 2,3,7,8-四氯二苯并-对二恶英(TCDD)被用作本研究中的典型毒素。该方法的线性范围为1至100 pM,检测限为0.1 pM(0.64 fg /测定),变异系数为5.6%(n = 10,50 pM TCDD在转化的细胞质中)。整个检测周期与4小时相似。该方法还用于估算1,2,3,7,8-五氯二苯并-对-二恶英(PeCDD)和1,2,3,4,7,8-六氯二苯并-对二恶英的毒性当量(TEQ) (HxCDD)。 TCDD,PeCDD和HxCDD混合物的TEQ的测量与预测数据高度一致。使用粉煤灰提取物的平均回收率接近93%。

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