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An ultrasensitive fluorescent aptasensor for detection of cancer marker proteins based on graphene oxide–ssDNA

机译:基于氧化石墨烯-ssDNA的超灵敏荧光适体传感器,用于检测癌症标志物蛋白

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摘要

A novel biosensing platform was developed by integrating a new ssDNA aptamer and graphene oxide (GO) for highly sensitive and selective detection of liver cancer biomarkers (alpha-fetoprotein, AFP). The key concept of this biosensing platform is that the fluorescence of dye-modified ssDNA can be effectively quenched by GO after forming the hybrid structure of graphene oxide–ssDNA (GO–ssDNA). The AFP can selectively react with GO–ssDNA and lead to the decomposition of GO–ssDNA, which results in the recovery of fluorescence, and an increase in fluorescence intensity with the increasing concentration of AFP in the range of 0 to 300 pg mL ~(?1) . The linear range was obtained from 1 to 150 pg mL ~(?1) and the detection limit was 0.909 pg mL ~(?1) . Moreover, this biosensing platform can be applied to serum and cell imaging for the detection of AFP. The results show that the proposed biosensor has great potential application in AFP-related clinical diagnosis and research.
机译:通过整合新的ssDNA适体和氧化石墨烯(GO),开发了一种新型的生物传感平台,用于肝癌生物标志物(甲胎蛋白,AFP)的高灵敏度和选择性检测。该生物传感平台的关键概念是,在形成氧化石墨烯-ssDNA(GO-ssDNA)的杂化结构后,染料修饰的ssDNA的荧光可以被GO有效淬灭。 AFP可以与GO–ssDNA选择性反应并导致GO–ssDNA分解,从而导致荧光的恢复,并且随着AFP浓度在0到300 pg mL范围内的增加,荧光强度也会增加。 ?1)。线性范围为1至150 pg mL〜(?1),检出限为0.909 pg mL〜(?1)。此外,该生物传感平台可应用于血清和细胞成像,以检测AFP。结果表明,提出的生物传感器在与AFP相关的临床诊断和研究中具有巨大的潜在应用。

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