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◆ Biosensors & bioelectronics2026-08-04

Nanozyme-SERS cascade immunoassay: From in-situ generation to signal enhancement of diffusible reporters in hotspots of Ag-rich nanoshell monolayers.

Yusen Huang, Shufan Chen, Fei Xiao, Fengling Shu, Shulin Wang, Jing Jin, Zhirui Guo, Shikun Cai, Tingting Bai

原始摘要(英文原文)· Original abstract
The ultrasensitive detection of protein biomarkers is critical for early disease diagnosis and intervention. Surface-enhanced Raman spectroscopy (SERS) offers high sensitivity and molecular specificity, yet conventional SERS immunoassays face two fundamental limitations: (i) in covalently labeled nanotags, the immunoprotein layers sterically separate the reporters from the electromagnetic hotspots of the SERS substrate, leading to signal attenuation; and (ii) electrostatically adsorbed reporters readily desorb and diffuse to the substrate during immunocomplex formation, generating false-positive signals. To address these limitations, we introduced a nanozyme-SERS cascade immunoassay that decouples signal generation from the immunocomplex. The platform employs Au@Ag-Pt nanozymes as catalytic probes and Ag-rich nanoshell monolayer as the capture substrate. Upon target recognition, the nanozymes catalyze the oxidation of 3,3',5,5'-tetramethylbenzidine (TMB), generating diffusible and positively charged TMB+ that spontaneously migrate into the hotpots of the negatively charged monolayer, enabling intense SERS enhancement free from spatial constraints. For p-Tau181 detection, the platform achieved remarkable detection limits of 50 fg/mL in standard solution and 100 fg/mL in artificial serum using a portable Raman spectrometer, providing a robust and versatile strategy for ultrasensitive detection of diverse disease-related proteins.
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Nanozyme-SERS cascade immunoassay: From in-situ generation to signal enhancement of diffusible reporters in hotspots of Ag-rich nanoshell monolayers. — 科研速览 Science Skim