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Updated: Aug 4, 2026

Compact Quantum Dots for Single-molecule Imaging
Published on: October 9, 2012
An Advanced Fluorescent Molecularly Imprinted Sensor Based on Carbon Quantum Dots for Highly Sensitive Detection of
Yinuo Liu1, Zhengyuan Dai1, Ying Wang1
1Department of Chemistry, College of Sciences, Shanghai University, Shanghai, 200444, PR China.
Abstract:
This study developed a fluorescent molecularly imprinted sensor (CDs@MIPs) for the highly selective detection of the anticancer drug 6-mercaptopurine (6-MP). 6-MP is an anti-cancer drug with myelosuppressive and hepatotoxic effects. If used improperly, it can cause serious adverse reactions in humans and other organisms. The sensor was fabricated via the sol-gel method using blue-emissive nitrogen-doped carbon dots (CDs) as the fluorophore and 3-aminopropyl triethoxysilane (APTES) as the functional monomer. The sensor leveraged molecularly imprinted technology to construct specific recognition cavities, which enabled highly efficient and sensitive detection of 6-MP. Under the optimal experimental conditions and at 325 nm excitation, with the increase of 6-MP concentration, the fluorescence intensity of the sensor at the emission of 415 nm gradually decreases. The sensor demonstrated a linear detection range of 5.0-120.0 µM (Y = - 6.55X + 792.39) with a detection limit of 1.67 µM (S/N = 3). It exhibited strong anti-interference capability, excellent reproducibility and stable fluorescence performance. When applied to the detection of Mercaptopurine tablets, the method achieved recovery rate of 97.80%-108.63%, providing a highly sensitive and cost-effective analytical approach for clinical drug monitoring.
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