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Electronic control of DNA-based nanoswitches and nanodevices

机译:基于DNA的纳米开关和纳米型的电子控制

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Here we demonstrate that we can rationally and finely control the functionality of different DNA-based nanodevices and nanoswitches using electronic inputs. To demonstrate the versatility of our approach we have used here three different model DNA-based nanoswitches triggered by heavy metals and specific DNA sequences and a copper-responsive DNAzyme. To achieve electronic-induced control of these DNA-based nanodevices we have applied different voltage potentials at the surface of an electrode chip. The applied potential promotes an electron-transfer reaction that releases from the electrode surface a molecular input that ultimately triggers the DNA-based nanodevice. The use of electronic inputs as a way to finely activate DNA-based nanodevices appears particularly promising to expand the available toolbox in the field of DNA nanotechnology and to achieve a better hierarchical control of these platforms.
机译:在这里,我们证明我们可以使用电子输入合理地控制基于DNA的纳米图和纳米开关的功能。为了证明我们的方法的多功能性,我们在这里使用了三种不同的模型基于DNA的纳米行,由重金属和特定的DNA序列和铜响应性DNAzyme触发。为了实现对基于DNA的纳米设备的电子感应控制,我们在电极芯片的表面上施加了不同的电压电位。施加的电位促进了从电极表面释放的电子转移反应,该电极表面最终触发基于DNA的纳米型的分子输入。使用电子输入作为精细激活基于DNA的纳米型的方式似乎特别有希望扩展DNA纳米技术领域中的可用工具箱,并实现这些平台的更好的分层控制。

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