Z-Scheme Bismuth-Based Ternary Heterostructured Photoelectrochemical Sensor Integrated with Cu 3 P Nanoparticles as a Multifunctional Signal Probe for Quantifying Circulating Tumor Cells
作者:Chengqi Bao, Rong Shao, Yan Lu, Minghui Yang, Xiaoqing Li · 发表于:Analytical Chemistry · 年份:2025 · DOI:10.1021/acs.analchem.5c02513 · 被引用次数:10 · 研究领域:Advanced biosensing and bioanalysis techniques、Gas Sensing Nanomaterials and Sensors、Gold and Silver Nanoparticles Synthesis and Applications
Circulating tumor cells (CTCs) are widely acknowledged as critical biomarkers for early cancer diagnosis and prognosis, highlighting the urgent need for the development of sensitive and accurate detection methods for CTCs. Herein, a photoelectrochemical (PEC) sensor was developed based on dual Z-scheme Bi 2 S 3 /Bi 2 O 2 CO 3 /Zn 0.5 Cd 0.5 S heterojunctions as the high-efficiency photoactive material and Cu 3 P nanoparticles (Cu 3 P NPs) as the multifunctional signal probe, thereby achieving sensitivity and precise detection of MCF-7 cells. The Z-scheme heterojunction structure significantly enhances the photoelectric conversion efficiency, while Cu 3 P NPs can suppress the photocurrent through p–n semiconductor quenching and enzyme-mimetic catalytic precipitation, which involves the catalytic oxidation of 4-chloro-1-naphthol (4-CN) to form the insoluble precipitate benzo-4-chloro-hexadienone (4-CD). Coupled with aptamer-functionalized magnetic nanobeads (Apt MUC1 –MNs) for selective cell capture and enrichment, the PEC sensor achieved an ultrawide linear range (4 cells/mL to 3 × 10 5 cells/mL) and a remarkably low detection limit (LOD) of 1 cell/mL (S/N = 3), alongside good selectivity, stability, and reproducibility. Furthermore, the successful validation of MCF-7 in human serum samples demonstrates its clinical applicability, highlighting promising potential for early cancer diagnosis and liquid biopsy applications. This work provides a novel PEC sensing platform for sens...