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Graphene oxide as a photocatalytic nuclease mimicking nanozyme for DNA cleavage

机译:石墨烯氧化物作为光催化核酸酶模拟纳米酶用于DNA裂解

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Developing nanomaterial-based enzyme mimics for DNA cleavage is an interesting challenge and it has many potential applications. Single-layered graphene oxide (GO) is an excellent platform for DNA adsorption. In addition, GO has been employed for photosensitized generation of reactive oxygen species (ROS). Herein, we demonstrate that GO sheets could cleave DNA as a nuclease mimicking nanozyme in the presence of UV or blue light. For various DNA sequences and lengths, well-defined product bands were observed along with photobleaching of the fluorophore label on the DNA. Different from previously reported GO cleavage of DNA, our method did not require metal ions such as Cu2+. Fluorescence spectroscopy suggested a high adsorption affinity between GO and DNA. For comparison, although zero-dimensional fluorescent carbon dots (C-dots) had higher photosensitivity in terms of producing ROS, their cleavage activity was much lower and only smeared cleavage products were observed, indicating that the ROS acted on the DNA in solution. Based on the results, GO behaved like a classic heterogeneous catalyst following substrate adsorption, reaction, and product desorption steps. This simple strategy may help in the design of new nanozymes by introducing light.
机译:开发用于DNA裂解的纳米材料酶模拟是一种有趣的攻击,它具有许多潜在的应用。单层石墨烯氧化物(GO)是用于DNA吸附的优异平台。此外,GO已经用于电敏氧(ROS)的光敏产生。在此,我们证明GO纸可以在UV或蓝光存在下将DNA作为模拟纳米酶的核酸酶。对于各种DNA序列和长度,观察到明确的产品带以及DNA上的荧光团标记的光漂白。不同于先前报道的DNA的裂解,我们的方法不需要金属离子,例如Cu2 +。荧光光谱表明,在去和DNA之间的高吸附亲和力。为了比较,尽管零维荧光碳点(C点)在产生ROS方面具有较高的光敏性,但它们的切割活性远低得多,仅观察到涂片的切割产物,表明RO在溶液中的DNA上作用。基于结果,如底物吸附,反应和产品解吸步骤后表现得像经典的异质催化剂。这种简单的策略可以通过引入光线来帮助设计新的纳释尼纳佐。

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