研究目的
To design a signal-switchable lab-on-paper photoelectrochemical aptasensing system for the ultrasensitive determination of prostate-specific antigen (PSA) by integrating a triple-helix molecular switch with the charge separation and recombination regime of type-II CdTe@CdSe core-shell quantum dots.
研究成果
The study successfully constructed a promising “on-off-on” configuration PEC aptasensing platform for the ultrasensitive determination of PSA based on the well-designed THMS and cascaded multiple sensitization structure. The unique type-II core-shell structure of CdTe@CdSe QDs regulated the spatial charge separation and transfer and broadened light absorption. The developed signal-switchable aptasensor was applied to the determination of PSA with high sensitivity, unexceptionable selectivity, and excellent stability, showing great potential for the detection of multifarious biomarkers.
研究不足
The study does not explicitly mention limitations, but potential areas for optimization could include further enhancing the sensitivity and selectivity of the aptasensor, as well as expanding its application to other biomarkers.
1:Experimental Design and Method Selection:
The study involved the design of a signal-switchable lab-on-paper PEC aptasensing platform for PSA detection, combining the high specificity and target-induced allosteric change mechanism of THMS with the charge separation and recombination regime of type-II CdTe@CdSe core-shell QDs.
2:Sample Selection and Data Sources:
The real biomedical application was evaluated by analyzing real human serum samples, comparing the assay results with reference values obtained by a commercially available electrochemiluminescent analyzer.
3:List of Experimental Equipment and Materials:
The paper-based analytical device was designed using Adobe illustrator CC 2017, and the preparation involved Au nanoparticles, ZnO nanotubes, CdS QDs, CdTe@CdSe QDs, and GNPs labeled PSA-Apt.
4:Experimental Procedures and Operational Workflow:
The fabrication process included the electrodeposition of ZnO NTs on PAE, immobilization of CdS QDs, attachment of STP and MCH, labeling with CdTe@CdSe QDs, and hybridization with GNPs labeled PSA-Apt to form the triple-helix configuration.
5:Data Analysis Methods:
The analytical performance was investigated by using PSA with different concentrations, and the photocurrent intensity was measured under optimal experimental conditions.
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