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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >A new photoelectrochemical biosensors based on DNA conformational changes and isothermal circular strand-displacement polymerization reaction
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A new photoelectrochemical biosensors based on DNA conformational changes and isothermal circular strand-displacement polymerization reaction

机译:基于DNA构象变化和等温圆链置换聚合反应的新型光电化学生物传感器

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摘要

We report a strategy for the transduction of DNA hybridization into a readily detectable photoelectrochemical signal by means of a conformational change analogous to electrochemical DNA (E-DNA) approach. To demonstrate the effect of distance change for photosensitizer to the surface of electrode on the change of photocurrent, photosensitizer Ru(bpy) _2(dcbpy) ~(2+) tagged DNA stem-loop structures were self-assembled onto a nanogold modified ITO electrode. Hybridization induced a large conformational change in DNA structure, which in turn significantly altered the electron-transfer tunneling distance between the electrode and photosensitizer. The resulting change in photocurrent was proportional to the concentration of DNA in the range of 1.0×10 ~(-10)-8.0×10 ~(-9)M. In order to improve the sensitivity of the photoelectrochemical biosensor, an amplified detection method based on isothermal strand displacement polymerization reaction was employed. With multiple rounds of isothermal strand replication, which led to strand displacement and constituted consecutive signal amplification, a detection limit of 9.4×10 ~(-14)M target DNA was achieved.
机译:我们报告了一种通过类似于电化学DNA(E-DNA)方法的构象变化将DNA杂交转化为易于检测的光电化学信号的策略。为了证明光敏剂到电极表面的距离变化对光电流变化的影响,将光敏剂Ru(bpy)_2(dcbpy)〜(2+)标记的DNA茎环结构自组装到纳米金修饰的ITO电极上。杂交引起DNA结构的巨大构象变化,进而显着改变了电极与光敏剂之间的电子转移隧穿距离。产生的光电流变化与DNA浓度成正比,范围为1.0×10〜(-10)-8.0×10〜(-9)M。为了提高光电化学生物传感器的灵敏度,采用了基于等温链置换聚合反应的扩增检测方法。通过多轮等温链复制,导致链置换并构成连续的信号放大,检测限达到9.4×10〜(-14)M靶DNA。

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