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Programmable RNA-based systems for sensing and diagnostic applications

机译:基于RNA的传感和诊断应用系统的基于可编程RNA的系统

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The emerging field of RNA nanotechnology harnesses the versatility of RNA molecules to generate nature-inspired systems with programmable structure and functionality. Such methodology has therefore gained appeal in the fields of biosensing and diagnostics, where specific molecular recognition and advanced input/output processing are demanded. The use of RNA modules and components allows for achieving diversity in structure and function, for processing information with molecular precision, and for programming dynamic operations on the grounds of predictable non-covalent interactions. When RNA nanotechnology meets bioanalytical chemistry, sensing of target molecules can be performed by harnessing programmable interactions of RNA modules, advanced field-ready biosensors can be manufactured by interfacing RNA-based devices with supporting portable platforms, and RNA sensors can be engineered to be genetically encoded allowing for real-time imaging of biomolecules in living cells. In this article, we report recent advances in RNA-based sensing technologies and discuss current trends in RNA nanotechnology-enabled biomedical diagnostics. In particular, we describe programmable sensors that leverage modular designs comprising dynamic aptamer-based units, synthetic RNA nanodevices able to perform target-responsive regulation of gene expression, and paper-based sensors incorporating artificial RNA networks.
机译:RNA纳米技术的新兴领域利用RNA分子的多功能性,以产生具有可编程结构和功能的自然启发系统。因此,这种方法在生物传感和诊断领域获得了上诉,其中要求具体的分子识别和先进的输入/输出处理。使用RNA模块和部件允许实现结构和功能的多样性,用于处理具有分子精度的信息,以及用于对可预测的非共价相互作用的基础进行编程动态操作。当RNA纳米技术满足生物分析化学时,可以通过利用RNA模块的可编程相互作用来进行靶分子的感测,可以通过接合基于RNA的装置与支撑便携式平台来制造先进的现场就绪的生物传感器,并且RNA传感器可以设计成遗传编码允许生物分子在活细胞中的实时成像。在本文中,我们报告了基于RNA的传感技术的最近进步,并讨论了能够RNA纳米技术的生物医学诊断的当前趋势。特别地,我们描述了利用包括动态适体的单元的模块化设计的可编程传感器,能够对基因表达的目标响应调节和包含人造RNA网络的纸张的传感器进行组合RNA纳米型。

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