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Multidimensional Tunability of Nucleic Acids Enables Sensing over Unknown Backgrounds

机译:核酸的多维可调性使得能够在未知的背景上感测

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A longstanding challenge in quantitative analysis is the relationship between a sensor's dynamic range and a background: the response range must align with the target's background value. If this condition is not met, a reliable measurement is impossible. The requirement is especially critical for sensing systems displaying sharp responses. In this work, we have solved the problem of response range/background misalignment via design of sensing systems that adjust their response to actual unknown backgrounds. The sensing systems are based on nucleic acid scaffolds: due to an intrinsic trait of multidimensional tunability, the sensors can assess the actual background and adjust response range accordingly. We established a general methodology and demonstrated, as a proof-of-concept, a practically meaningful example of detecting very small changes in proton concentrations over unknown aqueous backgrounds using a DNA i-motif sensor. Owing to multidimensional tunability of a DNA i-motif, this sensor could reliably measure changes in proton concentration that are 3 orders of magnitude below currently available methodologies.
机译:定量分析中的长期挑战是传感器动态范围和背景之间的关系:响应范围必须与目标的后台值对齐。如果不满足这种情况,则不可能进行可靠的测量。要求对显示急需响应的传感系统来说尤为重要。在这项工作中,我们已经解决了通过调整其对实际未知背景的响应的传感系统的设计来解决了响应范围/背景未对准的问题。传感系统基于核酸支架:由于多维可调性的内在特征,传感器可以评估实际背景并相应地调整响应范围。我们建立了一般的方法,并证明了概念证据,实际上有意义地使用DNA I-MOTIF传感器在未知的水性背景上检测质子浓度的非常小的变化。由于DNA I-MOTIF的多维可调节性,该传感器可以可靠地测量质子浓度的变化,这些质子浓度为3个数量级,下面的目前可用的方法。

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