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首页> 外文期刊>Mikrochimica Acta: An International Journal for Physical and Chemical Methods of Analysis >A split aptamer-labeled ratiometric fluorescent biosensor for specific detection of adenosine in human urine
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A split aptamer-labeled ratiometric fluorescent biosensor for specific detection of adenosine in human urine

机译:用于特异性检测人尿液中腺苷的分裂适体标记的比率荧光生物传感器

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摘要

A dual-emission ratiometric fluorometric aptasensor is presented for highly specific detection of adenosine. An adenosine binding aptamer (ABA) was split into two halves (termed as ABA1 and ABA2). ABA1 was covalently bound to blue-emitting carbon dots (with excitation/emission maxima at 365/440nm) as responsive fluorophore (referred to as ABA1-CDs). ABA2 was linked to red-emitting silica-coated CdTe quantum dots (with excitation/emission maxima at 365/613nm) acting as internal reference and referred to as ABA2-QDs@SiO2. Upon addition of graphene oxide, the fluorescence of ABA1-CDs is quenched. After subsequent addition of ABA2-QDs@SiO2 and different amounts of adenosine, the blue fluorescence is recovered and causes a color change from red to royalblue. The method represents a ratiometric turn-on assay for visual, colorimetric and fluorometric determination of adenosine. The limit of detection is as low as 2.4nM in case of ratiometric fluorometry. The method was successfully applied to the determination of adenosine in (spiked) human urine. Recoveries range from 98.8% to 102%.
机译:提出了双发射尺寸荧光致动脉,用于对腺苷的高度特异性检测。将腺苷结合Aptamer(ABA)分成两半(称为ABA1和ABA2)。作为响应荧光团(称为ABA1-CDS)共价将ABA1与蓝色发射碳点(365 / 440nm的激发/发射最大值)共价结合。 ABA2与红发二氧化硅涂覆的CDTE量子点(365 / 613nm的激发/发射最大值)连接,作用为内部参考,并称为ABA2-QDS / SiO2。加入石墨烯氧化物后,淬灭ABA1-CD的荧光。在随后加入ABA2-QDS @ SiO 2和不同量的腺苷后,回收蓝色荧光并导致红色到RocoteBlue的颜色变化。该方法代表了腺苷的视觉,比色和荧光测定的比例测定。在比率荧光测定法的情况下,检测极限低至2.4nm。该方法成功地应用于腺苷(尖刺)人尿中的腺苷的测定。回收率为98.8%至102%。

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