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Cellular environment-responsive intelligent DNA logic circuits for controllable molecular sensing

机译:用于可控分子传感的蜂窝环境响应智能DNA逻辑电路

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摘要

Here we report smart molecular logic circuits built on a well-designed H-shaped DNA nanostructure that can recognize cell-simulated bioenvironments and modulate the operations of a DNA nanosensor. By assembling a wild-type ATP aptamer and a parallel G-quadruplex into the H-shaped DNA scaffold, two intrinsic cellular components, ATP and K+, are utilized to activate the logic circuits, enabling fluorescent detection of the target DNA via toehold-mediated strand displacement. In this way, two logic circuits consisting of cascaded "AND-AND" and "OR-AND" gates are achieved, which are responsive to the ATP and/or K+ concentration change outside and inside cells, and therefore control whether or not the downstream DNA sensor works. This work illustrates a novel concept for developing new bioinspired DNA molecular devices for not only programmable molecular sensing but also targeted drug delivery.
机译:在这里,我们报告基于精心设计的H形DNA纳米结构的智能分子逻辑电路,其可以识别细胞模拟生物环境并调节DNA纳米传感器的操作。 通过将野生型ATP适体和平行的G-QuadRuplex组装到H形DNA支架中,使用两个固有的细胞组分,ATP和K +来激活逻辑电路,通过Toehold介导实现靶DNA的荧光检测 股线流离失所。 以这种方式,实现了由级联“和”和“和”或“栅极组成的两个逻辑电路,其响应于ATP和/或K +浓度变化外部和内部细胞,因此控制是否下游 DNA传感器有效。 这项工作说明了一种用于开发新的生物透露DNA分子装置的新概念,不仅是可编程的分子感测,而且靶向药物递送。

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