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A photo zipper locked DNA nanomachine with an internal standard for precise miRNA imaging in living cells

机译:带有内标锁定DNA纳米机的照片拉链锁定DNA纳米载体在活细胞中的精确miRNA成像

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DNA nanomachines are capable of converting tiny triggers into autonomous accelerated cascade hybridization reactions and they have been used as a signal amplification strategy for intracellular imaging. However, the “always active” property of most DNA nanomachines with an “absolute intensity-dependent” signal acquisition mode results in “false positive signal amplification” by extracellular analytes and impairs detection accuracy. Here we design a photo zipper locked miRNA responsive DNA nanomachine (PZ-DNA nanomachine) based on upconversion nanoparticles (UCNPs) with a photo-cleavable DNA strand to block the miRNA recognition region, which provided sufficient protection to the DNA nanomachine against nonspecific extracellular activation and allowed satisfactory signal amplification for sensitive miRNA imaging after intracellular photoactivation. Multiple emissions from the UCNPs were also utilized as an internal standard to self-calibrate the intracellular miRNA responsive fluorescence signal. The presented PZ-DNA nanomachine demonstrated the sensitive imaging of intracellular miRNA from different cell lines, which resulted in good accordance with qRT-PCR measurements, providing a universal platform for precise imaging in living cells with high spatial–temporal specificity.
机译:DNA纳米机能够将微小的触发器转化为自主加速的级联杂交反应,并且它们已被用作细胞内成像的信号放大策略。然而,大多数DNA纳米机的“始终活跃”特性具有“绝对强度依赖性”信号采集模式,通过细胞外分析物产生“假阳性信号放大”并损害检测精度。在这里,我们基于上转化的纳米颗粒(UCNP)设计光泽锁定的miRNA响应DNA纳米机(PZ-DNA纳米机),其用光可切割的DNA链来阻断miRNA识别区域,这为DNA纳米载荷提供了足够的保护,这对非特异性细胞外激活提供了足够的保护并允许令人满意的信号放大用于细胞内光活化后的敏感miRNA成像。来自UCNP的多种排放也用作内标以自我校准细胞内miRNA响应荧光信号。呈现的PZ-DNA纳米机器展示了来自不同细胞系的细胞内miRNA的敏感性成像,这符合QRT-PCR测量,提供了具有高空间间特异性的活细胞精确成像的通用平台。

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