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Label-Free Visual Detection of Small Molecules Using Highly Target- Responsive Multimodule Split Aptamer Constructs

机译:使用高目标响应性多模块分裂适体构建物对小分子进行无标签的视觉检测

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摘要

Colorimetric aptamer-based sensors offer a simple means of on-site or point-of-care analyte detection. However, these sensors are largely incapable of achieving naked-eye detection, because of the poor performance of the target-recognition and signal-reporting elements employed. To address this problem, we report a generalizable strategy for engineering novel multimodule split DNA constructs termed “CBSAzymes” that utilize a cooperative binding split aptamer (CBSA) as a highly target-responsive bioreceptor and a new, highly active split DNAzyme as an efficient signal reporter. CBSAzymes consist of two fragments that remain separate in the absence of target, but effectively assemble in the presence of the target to form a complex that catalyzes the oxidation of 2,2′-azino-bis(3-ethylbenzthiazoline)-6-sulfonic acid, developing a dark green color within 5 min. Such assay enables rapid, sensitive, and visual detection of small molecules, which has not been achieved with any previously reported split-aptamer-DNAzyme conjugates. In an initial demonstration, we generate a cocaine-binding CBSAzyme that enables naked-eye detection of cocaine at concentrations as low as 10 μM. Notably, CBSAzyme engineering is straightforward and generalizable. We demonstrate this by developing a methylenedioxypyrovalerone (MDPV)-binding CBSAzyme for visual detection of MDPV and 10 other synthetic cathinones at low micromolar concentrations, even in biological samples. Given that CBSAzyme-based assays are simple, label-free, rapid, robust, and instrument-free, we believe that such assays should be readily applicable for on-site visual detection of various important small molecules such as illicit drugs, medical biomarkers, and toxins in various sample matrices.
机译:基于比色适体的传感器提供了现场或现场即时分析物检测的简单方法。然而,由于所采用的目标识别和信号报告元件的性能较差,这些传感器在很大程度上不能实现肉眼检测。为了解决这个问题,我们报告了一种工程化称为“ CBSAzymes”的新型多模块分裂DNA构建体的通用策略,该构建体利用协同结合分裂适体(CBSA)作为高度靶向反应的生物受体,并将新的,高活性分裂DNAzyme作为有效信号记者。 CBSA酶由两个片段组成,两个片段在不存在靶标的情况下仍保持分离,但在存在靶标的情况下有效组装以形成催化2,2'-叠氮基-双(3-乙基苯并噻唑啉)-6-磺酸氧化的复合物,在5分钟内显示深绿色。这种测定法能够快速,灵敏和可视地检测小分子,这是任何先前报道的分裂适体-DNAzyme共轭物所无法实现的。在最初的演示中,我们生成了可卡因结合的CBSAzyme,它能够以低至10μM的浓度用肉眼检测可卡因。值得注意的是,CBSAzyme工程是简单易懂的。我们通过开发亚甲二氧基吡咯烷酮(MDPV)结合CBSAzyme来证明这一点,即使在生物样品中,也可以目测低微摩尔浓度的MDPV和10种其他合成的卡西酮。鉴于基于CBSAzyme的检测方法简单,无标记,快速,稳健且无需仪器,因此我们认为此类检测方法应可轻松应用于各种重要小分子的现场目视检测,例如非法药物,医学生物标记物,和各种样品基质中的毒素。

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