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A cooperative-binding split aptamer assay for rapid specific and ultra-sensitive fluorescence detection of cocaine in saliva

机译:协同结合拆分适体测定法用于唾液中可卡因的快速特异性和超灵敏荧光检测

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摘要

Sensors employing split aptamers that reassemble in the presence of a target can achieve excellent specificity, but the accompanying reduction of target affinity mitigates any overall gains in sensitivity. We for the first time have developed a split aptamer that achieves enhanced target-binding affinity through cooperative binding. We have generated a split cocaine-binding aptamer that incorporates two binding domains, such that target binding at one domain greatly increases the affinity of the second domain. We experimentally demonstrate that the resulting cooperative-binding split aptamer (CBSA) exhibits higher target binding affinity and is far more responsive in terms of target-induced aptamer assembly compared to the single-domain parent split aptamer (PSA) from which it was derived. We further confirm that the target-binding affinity of our CBSA can be affected by the cooperativity of its binding domains and the intrinsic affinity of its PSA. To the best of our knowledge, CBSA-5335 has the highest cocaine affinity of any split aptamer described to date. The CBSA-based assay also demonstrates excellent performance in target detection in complex samples. Using this CBSA, we achieved specific, ultra-sensitive, one-step fluorescence detection of cocaine within fifteen minutes at concentrations as low as 50 nM in 10% saliva without signal amplification. This limit of detection meets the standards recommended by the European Union's Driving under the Influence of Drugs, Alcohol and Medicines program. Our assay also demonstrates excellent reproducibility of results, confirming that this CBSA-platform represents a robust and sensitive means for cocaine detection in actual clinical samples.
机译:使用在目标物存在下重新组装的分裂适体的传感器可以实现出色的特异性,但随之而来的目标物亲和力的降低会降低总体灵敏度。我们首次开发了分裂适体,其通过协同结合获得增强的靶结合亲和力。我们已经产生了合并两个结合域的可卡因结合适体,使得靶标在一个域的结合大大增加了第二个域的亲和力。我们实验证明,与衍生自其的单域亲本分裂适体(PSA)相比,所得的合作结合分裂适体(CBSA)表现出更高的靶标结合亲和力,并且在靶标诱导的适体装配方面更具响应性。我们进一步证实,我们的CBSA的靶结合亲和力可能受其结合域的协同作用和其PSA的固有亲和力的影响。据我们所知,CBSA-5335在迄今为止描述的任何分裂适体中具有最高的可卡因亲和力。基于CBSA的测定还证明了在复杂样品中靶标检测中的出色性能。使用这种CBSA,我们可以在15分钟内在10%唾液中浓度低至50 nM的情况下实现可卡因的特异性,超灵敏的一步荧光检测,而无需信号放大。此检测极限符合欧盟《毒品,酒精和药品影响下的驾驶计划》所推荐的标准。我们的测定还证明了结果的极好的可重复性,证实了这种CBSA平台代表了在实际临床样品中检测可卡因的强大而灵敏的手段。

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