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◆ Analytical methods : advancing methods and applications2026-08-07

A ratiometric fluorescence nanosensor based on CdTe QDs for APE1 detection in breast cancer cell lysates.

Qiongdan Zhang, Zhuoer Chen, Huihong Duan, Caiyun Peng, Wei Wang, Bin Li

原始摘要(英文原文)· Original abstract
Apurinic/apyrimidinic endonuclease 1 (APE1) is a critical DNA repair enzyme and an emerging biomarker for cancer diagnosis. Herein, we developed a ratiometric fluorescence nanosensor using dual-emission CdTe quantum dots (R-QDs) for sensitive detection of APE1, a DNA repair enzyme and cancer biomarker. The R-QDs consist of two CdTe QDs (530 nm and 620 nm) mixed at a 1 : 3 ratio, initially showing red fluorescence. A hairpin probe (HP1) containing an AP site was labeled with biotin for magnetic bead binding and a thiol for AgNP attachment. When APE1 cleaves the probe, the AgNP fragment is released, magnetically separated, and acid-treated to release Ag+ ions. These ions quench the R-QDs, causing a ratiometric fluorescence change. The sensor responds linearly to APE1 from 0-0.2 U mL-1, with a detection limit of 0.0141 U mL-1, and shows high selectivity against other enzymes. It successfully detected APE1 in breast cancer cell lysates (MCF-7, MDA-MB-231, A549), with good linearity (R2 = 0.99) and recovery rates of 94.5-107.2% (RSD < 5.2%). This method offers a reliable platform for APE1 detection in complex biological samples, aiding cancer diagnosis and treatment monitoring.
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A ratiometric fluorescence nanosensor based on CdTe QDs for APE1 detection in breast cancer cell lysates. — 科研速览 Science Skim