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级联化学反应与石墨烯-DNA 相互作用相结合,为生物传感器的制备开发新策略。

Combination of cascade chemical reactions with graphene-DNA interaction to develop new strategy for biosensor fabrication.

机构信息

Laboratory of Biosensing Technology, School of Life Sciences, Shanghai University, Shanghai 200444, PR China.

出版信息

Biosens Bioelectron. 2013 Sep 15;47:32-7. doi: 10.1016/j.bios.2013.02.039. Epub 2013 Mar 1.

Abstract

Graphene, a single atom thick and two dimensional carbon nano-material, has been proven to possess many unique properties, one of which is the recent discovery that it can interact with single-stranded DNA through noncovalent π-π stacking. In this work, we demonstrate that a new strategy to fabricate many kinds of biosensors can be developed by combining this property with cascade chemical reactions. Taking the fabrication of glucose sensor as an example, while the detection target, glucose, may regulate the graphene-DNA interaction through three cascade chemical reactions, electrochemical techniques are employed to detect the target-regulated graphene-DNA interaction. Experimental results show that in a range from 5μM to 20mM, the glucose concentration is in a natural logarithm with the logarithm of the amperometric response, suggesting a best detection limit and detection range. The proposed biosensor also shows favorable selectivity, and it has the advantage of no need for labeling. What is more, by controlling the cascade chemical reactions, detection of a variety of other targets may be achieved, thus the strategy proposed in this work may have a wide application potential in the future.

摘要

石墨烯是一种单层原子厚度、二维纳米材料,已被证明具有许多独特的性质,其中之一是最近发现它可以通过非共价的 π-π 堆积与单链 DNA 相互作用。在这项工作中,我们证明了通过将这种性质与级联化学反应相结合,可以开发出许多种生物传感器的新策略。以葡萄糖传感器的制作为例,虽然检测目标葡萄糖可以通过三个级联化学反应来调节石墨烯-DNA 相互作用,但电化学技术被用于检测目标调节的石墨烯-DNA 相互作用。实验结果表明,在 5μM 到 20mM 的范围内,葡萄糖浓度与安培响应的对数呈自然对数关系,这表明了最佳的检测限和检测范围。所提出的生物传感器还表现出良好的选择性,并且具有无需标记的优点。更重要的是,通过控制级联化学反应,可以实现对多种其他目标的检测,因此这项工作中提出的策略在未来可能具有广泛的应用潜力。

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