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A novel amplified double-quenching aptasensor for cocaine detection based on split aptamer and silica nanoparticles

机译:基于分裂适体和二氧化硅纳米粒子的可卡因检测的一种新型扩增的双猝灭瓣

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摘要

Herein, a sensitive and rapid fluorescent aptasensor was developed for the detection of cocaine as an illicit drug, based on an amplification strategy involving the use of silica nanoparticles coated with streptavidin (SNPs), double quenching of FAM fluorophore and cocaine split aptamer. Presence of cocaine could trigger the formation of the double-fragment cocaine aptamer and bring TAMRA fluorophore near the SNP surface and FAM close to BHQ-1 and TAMRA, resulting in the enhancement of relative fluorescence signal (fluorescence intensity of TAMRA/fluorescence intensity of FAM). Under optimal conditions, the proposed aptasensor achieved a limit of detection (LOD) of 84 pM and a linear range of 500 pM to 80 nM for cocaine. The practical potential of the developed sensing platform was proved by the detection of cocaine in spiked human serum samples with satisfactory recoveries.
机译:在此,基于涉及使用链霉蛋白(SNP)的二氧化硅纳米颗粒,FAM荧光团和可卡因分裂适体的双重猝灭的扩增策略,开发了一种敏感和快速的荧光荧光体传感器作为非法药物。 可卡因的存在可以触发双片段可卡因适体的形成,并将Tamra荧光团带到SNP表面附近,FAM接近BHQ-1和TAMRA,导致相对荧光信号的增强(烟雾强度的荧光强度的FAM的荧光强度 )。 在最佳条件下,所提出的Aptasensor实现了84pM的检测(LOD)的极限,并且可卡因的500pm至80nm的线性范围。 通过令人满意的回收率检测了发达的传感平台的实际潜力。

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