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Asymmetric hybrid silica nanomotors for capture and cargo transport: Towards a novel motion-based DNA sensor

机译:用于捕获和货物运输的非对称混合二氧化硅纳米电动机:面向新型基于运动的DNA传感器

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摘要

An innovative self-propelled nanodevice able to perform motion, cargo transport, and target recognition is presented. The system is based on a mesoporous motor particle, which is asymmetrically functionalized by the attachment of single-stranded DNA onto one of its faces, while catalase is immobilized on the other face. This enzyme allows catalytic decomposition of hydrogen peroxide to oxygen and water, giving rise to the driving force for the motion of the whole system. Moreover the motor particles are able to capture and transport cargo particles functionalized with a noncomplementary single-stranded DNA molecule, only if a specific oligonucleotide sequence is present in the media. Functionalization with characteristic oligonucleotide sequences in the system implies a potential for further developments for lab-on-chip devices with applications in biomedical applications.
机译:介绍了一种能够执行运动,货物运输和目标识别的创新型自行式纳米设备。该系统基于中孔运动粒子,该粒子通过将单链DNA附着在其一个表面上而被不对称地功能化,而过氧化氢酶则被固定在另一个表面上。这种酶使过氧化氢催化分解为氧气和水,从而产生了整个系统运动的驱动力。而且,仅当介质中存在特定的寡核苷酸序列时,马达颗粒才能够捕获和运输被非互补单链DNA分子功能化的货物颗粒。系统中具有特征性寡核苷酸序列的功能化意味着芯片实验室设备在生物医学应用中的进一步开发潜力。

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