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Dual color fluorescence quantitative detection of mercury in soil with graphene oxide and dye-labeled nucleic acids

机译:氧化石墨烯和染料标记的核酸双色荧光定量检测土壤中的汞

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A dual color fluorescence quantitative detection method for Hg2+ in soil has been developed by synchronous fluorescence analysis based on graphene oxide (GO) and dye-labeled nucleic acids. In this strategy, two complementary dye-labeled single-stranded nucleic acids (ssDNAs) with thyminea€“thymine (Ta€“T) mismatches and GO were employed. Two dyes 6-carboxyfluorescein (FAM) and 6-carboxy-x-rhodamine (ROX) were labeled on 3a€2 ends of two different ssDNAs, respectively. In the absence of Hg2+, dye-labeled ssDNAs were adsorbed on GO, then the fluorescence of dyes was quenched by GO and the fluorescence signals were very weak. But in the presence of Hg2+, two complementary ssDNAs with Ta€“T mismatches formed double-stranded DNA (dsDNA) via the Ta€“Hg2+a€“T coordination structure. The formation of dsDNA resulted in the release of dye-labeled ssDNA from GO, and the fluorescence of dyes was restored. The wavelength intervals between the maximum excitation and emission of FAM and ROX are very close, so the fluorescence signals of two dyes can be obtained simultaneously using synchronous fluorescence analysis. Thus, dual color fluorescence quantitative detection of Hg2+ can be realized by simultaneously measuring the fluorescence signals of FAM and ROX, respectively. Under optimum conditions, the total fluorescence intensity of FAM and ROX exhibited a good linear dependence on the Hg2+ concentration in the range from 8 ?— 10a?’10 to 8 ?— 10a?’8 mol La?’1. The fitted regression equation was obtained with a correlation coefficient (R2) of 0.9952 and the detection limit (3??) of Hg2+ was estimated to be 5 ?— 10a?’10 mol La?’1. This proposed method can use the total fluorescence intensity of FAM and ROX to realize the quantitative detection of Hg2+, so the detection sensitivity of the analytical method can be greatly improved.
机译:通过基于氧化石墨烯(GO)和染料标记核酸的同步荧光分析,开发了一种用于土壤中Hg2 +的双色荧光定量检测方法。在该策略中,使用了两个互补的染料标记的胸腺嘧啶-胸腺嘧啶(Ta-T)错配和GO的单链核酸(ssDNA)。两种染料6-羧基荧光素(FAM)和6-羧基-x-罗丹明(ROX)分别标记在两个不同的ssDNA的3a-2末端。在没有Hg2 +的情况下,染料标记的ssDNA被GO吸附,然后染料的荧光被GO淬灭,荧光信号非常弱。但是在存在Hg2 +的情况下,两个具有Ta€T错配的互补ssDNA通过Ta€“ Hg2 + a” T的配位结构形成了双链DNA(dsDNA)。 dsDNA的形成导致从GO释放染料标记的ssDNA,并且染料的荧光得以恢复。 FAM和ROX的最大激发和发射之间的波长间隔非常接近,因此可以使用同步荧光分析同时获得两种染料的荧光信号。因此,通过同时测量FAM和ROX的荧光信号,可以实现Hg2 +的双色荧光定量检测。在最佳条件下,FAM和ROX的总荧光强度对Hg2 +浓度表现出良好的线性依赖性,其范围为8?-10a?'10到8?-10a?'8 mol La?'1。拟合的回归方程的相关系数(R2)为0.9952,Hg2 +的检出限(3 ??)估计为5?-10a?'10 mol La?'1。该方法可利用FAM和ROX的总荧光强度实现Hg2 +的定量检测,从而大大提高了分析方法的检测灵敏度。

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