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Fluorescently Imaged Particle Counting Immunoassay for Sensitive Detection of DNA Modifications

机译:荧光成像颗粒计数免疫测定法,用于DNA修饰的灵敏检测

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Modifications of genomic DNA may change gene expression and cause adverse health effects. Here we for the first time demonstrate a particle counting immunoassay for rapid and sensitive detection of DNA modifications using benzo[a]pyrenediol epoxide (BPDE)-DNA adducts as an example. The BPDE-adducted DNA is specifically captured by immunomagnetic particles and then isolated from unmodified DNA by applying an external magnetic field. By taking advantage of the fluorescence signal amplification through multiple labeling of captured DNA by OliGreen dye, the captured BPDE-DNA adducts can be quantified by particle counting from fluorescence imaging. This clearly demonstrates that the number of fluorescently countable particles is proportional to the modification content in genomic DNA. It is interesting to note that the background fluorescence signal caused by nonspecific adsorption of OliGreen dye can be more effectively quenched than that induced by the binding of OliGreen dye to ssDNA, allowing for significant reduction in the background fluorescence and further enhancing the detection sensitivity. The developed method can detect trace BPDE-DNA adducts as low as 180 fM in the presence of 1 billion times more normal nucleotides in genomic DNA and has a dynamic range over 4 orders of magnitude. By using anti-5-methylcytosine antibody, the method is extended to the detection of global DNA methylation. With high sensitivity and specificity, this rapid and easy-to-perform analytical method for DNA modifications shows a broad spectrum of potential applications in genotoxical and epigenetic analysis.
机译:基因组DNA的修饰可能会改变基因表达并引起不良的健康影响。在这里,我们首次展示了一种颗粒计数免疫测定法,以苯并[a] py二醇环氧(BPDE)-DNA加合物为例,可快速,灵敏地检测DNA修饰。 BPDE加成的DNA被免疫磁性粒子特异性捕获,然后通过施加外部磁场与未修饰的DNA分离。通过利用OliGreen染料对捕获的DNA进行多次标记来利用荧光信号放大的优势,可以通过荧光成像中的颗粒计数对捕获的BPDE-DNA加合物进行定量。这清楚地证明了可荧光计数颗粒的数量与基因组DNA中的修饰含量成正比。有趣的是,与由OliGreen染料与ssDNA结合诱导的信号相比,由OliGreen染料的非特异性吸附引起的背景荧光信号可以更有效地猝灭,从而可以显着减少背景荧光并进一步提高检测灵敏度。所开发的方法可以在基因组DNA中存在10亿倍正常核苷酸的情况下检测低至180 fM的痕量BPDE-DNA加合物,并且动态范围超过4个数量级。通过使用抗5-甲基胞嘧啶抗体,该方法扩展到了整体DNA甲基化的检测。这种快速,易于执行的DNA修饰分析方法具有很高的灵敏度和特异性,在遗传毒性和表观遗传分析中显示出广泛的潜在应用。

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