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Magnetic bead-based chemiluminescence detection of sequence-specific DNA by using catalytic nucleic acid labels

机译:使用催化核酸标记的基于磁珠的化学发光检测序列特异性DNA

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We wish to report a new chemiluminescence (CL)method for the determination of the sequence-specific DNA by the coupling of catalytic nucleic acid label (DNAzyme)based CL detection route with an efficient magnetic isolation of the hybrid.The assay relies on (i)the immobilization of NH_2 -modified capture DNA on the surface of carboxyl-terminated magnetic beads activated by EDC, (ii)first hybridization event occurring between the bead-captured DNA probe and one 15-mer portion (5'-AAT ATT GAT AAG GAT-3')of the target sequence, (iii)second hybridization happening between one part of the DNAzyme modified reporter sequence and another 15-mer portion (5'-GAG GGA TTA TTG TTA-3')of the target sequence, and then direct detection of CL signal on the surface of the magnetic beads in a basic solution of luminol and H_2O_2.The influence of relevant experimental variables, including the effect of the amount of the magnetic beads, the duration of the hybridization and the parameters affecting CL signal, is examined and optimized.The results showed that this simple and sensitive protocol was suitable for the determination of specific-sequence DNA as exemplified by the 30-base sequence related to the anthrax lethal factor with a good linear correlation in the concentration range of 0.02-2 pmol (R~2 = 0.9987)and a detection limit of 1 x 10~(-10)M.Overall, this new CL protocol coupled the high sensitivity of CL analysis with effective magnetic separation for discriminating against unwanted constituents such as mismatched sequences and proteins, hence, offers great promise for DNA hybridization analysis.
机译:我们希望报告一种新的化学发光(CL)方法,该方法可通过基于催化核酸标记(DNAzyme)的CL检测途径与杂种的有效磁分离相结合的方法来确定序列特异性DNA。 )将NH_2修饰的捕获DNA固定在被EDC活化的羧基末端磁珠的表面上,(ii)首次发生杂交事件,是在被磁珠捕获的DNA探针和一个15-mer部分(5'-AAT ATT GAT AAG)之间发生靶序列的GAT-3',(iii)DNAzyme修饰的报告序列的一部分与靶序列的另一15-mer部分(5'-GAG GGA TTA TTG TTA-3')之间发生第二次杂交,以及然后直接在鲁米诺和H_2O_2的碱性溶液中检测磁珠表面的CL信号。相关实验变量的影响,包括磁珠数量的影响,杂交的持续时间以及影响CL的参数信号结果表明,该简单而灵敏的方案适用于确定特定序列的DNA,例如与炭疽致死因子相关的30个碱基的序列,在浓度范围内具有良好的线性相关性。 0.02-2 pmol(R〜2 = 0.9987),检测极限为1 x 10〜(-10)M。总体而言,这种新的CL方案结合了CL分析的高灵敏度和有效的磁分离能力,可区分出不需要的成分,例如因此,错配的序列和蛋白质将为DNA杂交分析提供广阔的前景。

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