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◆ Analytical and bioanalytical chemistry2026-09-18

Electron-buffering effect of Ce3+ enhances copper nanocluster nanozyme activity for cascade-amplified biosensing and portable detection of α-glucosidase.

Jianjun Kang, JiangRui Guo, Fang Ke, Gengneng Lai, Zongcheng Shu, Xiuzhi Xu, Wei Li

原始摘要(英文原文)· Original abstract
Accurate quantification of enzyme activity is essential for early metabolic disease diagnosis and point-of-care bioanalysis. Abnormal α-glucosidase (α-GAA) activity is closely related to metabolic disorders, making its sensitive detection increasingly important. However, most current assays rely on one-to-one signal transduction, where each enzymatic event produces only a single detectable signal, inherently limiting sensitivity and compromising reliable detection under complex physiological conditions. Here, we establish a hierarchical catalytic amplification strategy for ultrasensitive α-GAA detection by integrating enzymatic hydrolysis, glucose oxidase-mediated H2O2 generation, and Ce3+-protected copper nanozyme catalysis. Crucially, a matrix-matched blank subtraction strategy is introduced to effectively eliminate interference from endogenous glucose and other non-specific reductants, ensuring that the final amplified signal exclusively originates from α-GAA activity. Benefiting from this three-stage amplification architecture and the blank correction, the platform enabled highly sensitive α-GAA quantification. Benefiting from this three-stage amplification architecture, the platform enabled highly sensitive α-GAA quantification over a linear range of 0.1-40 U/L with a detection limit of 0.026 U/L. The biosensor further exhibited excellent selectivity, reliable analytical performance in human serum, and portable quantitative analysis through smartphone-assisted colorimetric detection. This work advances nanozyme-based biosensing from conventional signal reporting toward amplification-guided analytical design, providing a generalizable strategy for developing next-generation decentralized diagnostic platforms.
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Electron-buffering effect of Ce3+ enhances copper nanocluster nanozyme activity for cascade-amplified biosensing and portable detection of α-glucosidase. — 科研速览 Science Skim