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首页> 外文期刊>Chemistry: A European journal >An autonomous bio-barcode DNA machine for exponential DNA amplification and its application to the electrochemical determination of adenosine triphosphate
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An autonomous bio-barcode DNA machine for exponential DNA amplification and its application to the electrochemical determination of adenosine triphosphate

机译:用于指数DNA扩增的自动生物条形码DNA机器及其在电化学测定三磷酸腺苷中的应用

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摘要

A novel autonomous bio-barcode DNA machine that is driven by template-dependent DNA replication is developed to exponentially amplify special DNA sequences. Combined with a DNA aptamer recognition element, the DNA machine can be further applied in the aptamer-based, amplified analysis of small molecules. As a model analyte, adenosine triphosphate (ATP) is determined by using the DNA machine system in combination with a DNA aptamer recognition strategy and differential pulse anodic stripping voltammetry (DPASV). Under the optimum conditions, detection limits as low as 2.8×10~(-17)M (3σ) for target DNA and 4.7×10~(-9)M (3σ) for ATP are achieved. The satisfactory determination of ATP in K562 leukemia cell and Ramos Burkitt's lymphoma cell reveal that this protocol possesses good selectivity and practicality. As a promising biomolecular device, this DNA machine may have an even broader application in the rapidly developing field of nanobiotechnology. DNA'A cog in the machine! An autonomous bio-barcode DNA machine that is driven by template-dependent DNA replication is developed for exponential DNA amplification (see picture). Combined with a sensing part based on a DNA aptamer, the DNA machine can be further applied in the amplified detection of small molecules.
机译:开发了一种新型的自主生物条形码DNA机器,该机器由依赖模板的DNA复制驱动,以指数方式扩增特殊的DNA序列。结合DNA适体识别元件,DNA机器可进一步应用于基于适体的小分子扩增分析。作为模型分析物,可通过结合使用DNA机器系统,DNA适体识别策略和差分脉冲阳极溶出伏安法(DPASV)来确定三磷酸腺苷(ATP)。在最佳条件下,目标DNA的检出限低至2.8×10〜(-17)M(3σ),而ATP的检出限则低至4.7×10〜(-9)M(3σ)。对K562白血病细胞和Ramos Burkitt淋巴瘤细胞中ATP的满意测定表明,该方案具有良好的选择性和实用性。作为一种有前途的生物分子设备,这种DNA机器在迅速发展的纳米生物技术领域中可能具有更广泛的应用。机器中的DNA'A齿轮!开发了由模板依赖的DNA复制驱动的自主生物条形码DNA机器,用于指数DNA扩增(见图)。结合基于DNA适体的传感部分,DNA机器可进一步应用于小分子的扩增检测。

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