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Sensitive Detection of Small-Molecule Targets Using Cooperative Binding Split Aptamers and Enzyme-Assisted Target Recycling

机译:使用合作结合分裂适体和酶辅助靶物回收灵敏地检测小分子靶物。

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摘要

Signal amplification via enzyme-assisted target recycling (EATR) offers a powerful means for improving the sensitivity of DNA detection assays, but it has proven challenging to employ EATR with aptamer-based assays for small-molecule detection due to insensitive target response of aptamers. Here, we describe a general approach for the development of rapid and sensitive EATR-amplified small-molecule sensors based on cooperative binding split aptamers (CBSAs). CBSAs contain two target-binding domains and exhibit enhanced target response compared with single-domain split aptamers. We introduced a duplexed C3 spacer abasic site between the two binding domains, enabling EATR signal amplification through exonuclease III’s apurinic endonuclease activity. As a demonstration, we engineered a CBSA-based EATR-amplified fluorescence assay to detect dehydroisoandrosterone-3-sulfate. This assay achieved 100-fold enhanced target sensitivity relative to a non-EATR-based assay, with a detection limit of 1 μM in 50% urine. We further developed an instrument-free colorimetric assay employing EATR-mediated aggregation of CBSA-modified gold nanoparticles for the visual detection of low-micromolar concentrations of cocaine. On the basis of the generalizability of CBSA engineering and the robust performance of EATR in complex samples, we believe that such assays should prove valuable for detecting small-molecule targets in diverse fields.
机译:通过酶辅助靶物循环(EATR)进行的信号放大为提高DNA检测测定的灵敏度提供了一种有力的手段,但是由于适体的靶反应不灵敏,因此将EATR与基于适体的测定一起用于小分子检测已被证明具有挑战性。在这里,我们描述了一种基于协同结合分裂适体(CBSA)的快速,灵敏的EATR扩增小分子传感器开发的通用方法。 CBSA包含两个目标绑定域,并且与单域分裂适体相比,表现出增强的靶反应。我们在两个结合结构域之间引入了一个双链C3间隔区无碱基位点,从而可以通过外切核酸酶III的嘌呤核酸内切酶活性来扩增EATR信号。作为演示,我们设计了基于CBSA的EATR扩增荧光测定法来检测脱氢异雄甾酮3硫酸盐。相对于非基于EATR的测定,该测定实现了目标灵敏度的100倍提高,在50%尿液中的检出限为1μM。我们进一步开发了一种无仪器的比色测定法,该方法采用EATR介导的CBSA修饰的金纳米颗粒的聚集体,用于视觉检测低微摩尔浓度的可卡因。基于CBSA工程的通用性和EATR在复杂样品中的强大性能,我们认为,这种检测方法对于在各个领域检测小分子靶标应被证明是有价值的。

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