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Stable DNA Nanomachine Based on Duplex-Triplex Transition for Ratiometric Imaging Instantaneous pH Changes in Living Cells

机译:基于双链-三链转变的稳定DNA纳米机,用于比率成像成像活细胞中的瞬时pH变化

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摘要

DNA nanomachines are becoming useful tools for molecular recognition, imaging, and diagnostics and have drawn gradual attention. Unfortunately, the present application of most DNA nanomachines is limited in vitro, so expanding their application in organism has become a primary focus. Hence, a novel DNA nanomachine named t-switch, based on the DNA duplex-triplex transition, is developed for monitoring the intracellular pH gradient. Our strategy is based on the DNA triplex structure containing C+-G-C triplets and pH-dependent Forster resonance energy transfer (FRET). Our results indicate that the t-switch is an efficient reporter of pH from pH 5.3 to 6.0 with a fast response of a few seconds. Also the uptake of the t-switch is speedy. In order to protect the t-switch from enzymatic degradation, PEI is used for modification of our DNA nanomachine. At the same time, the dynamic range could be extended to pH 4.6-7.8. The successful application of this pH-depended DNA nanomachine and motoring spatiotemporal pH changes associated with endocytosis is strong evidence of the possibility of self-assembly DNA nanomachine for imaging, targeted therapies, and controllable drug delivery.
机译:DNA纳米机器正成为用于分子识别,成像和诊断的有用工具,并逐渐引起人们的关注。不幸的是,大多数DNA纳米机器的当前应用在体外受到限制,因此扩大其在生物体中的应用已成为主要焦点。因此,基于DNA双链体-三链体转变的新型tDNA纳米机被开发用于监测细胞内pH梯度。我们的策略基于包含C + -G-C三胞胎和pH依赖的Forster共振能量转移(FRET)的DNA三链体结构。我们的结果表明,t开关是pH值从5.3到6.0的有效报告者,具有几秒钟的快速响应。 T形开关的吸收也很快。为了保护t-switch免于酶促降解,PEI用于修饰我们的DNA纳米机器。同时,动态范围可以扩展到pH 4.6-7.8。这种依赖于pH值的DNA纳米机的成功应用和与胞吞作用相关的时空pH值变化的有力证据表明,自组装DNA纳米机可用于成像,靶向治疗和可控药物递送。

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