ZrO₂@C-based colorimetric/photothermal dual-mode immunosensor coupled with a novel monoclonal antibody for quantification of Aspergillus ochraceus biomass
Chen Wang, Jingjing Zhang, Yong-Huan Yun, Qi Zhang, Peiwu Li, Xiaoqian Tang
Journal:FOOD CHEMISTRY
IF:10.4
DOI:10.1016/j.foodchem.2026.150381
PMID:
Published:2026-07-11
research field:分子生物学药理学内分泌学细胞生物学代谢学
Abstract
mAb 4B4 and pAb G2801 were prepared to quantify Aspergillus ochraceus biomass. • A ZrO₂@C dual-signal nanoprobe was synthesized for colorimetric/photothermal detection. • The dLFIA quantifies A. ochraceus biomass with LODs of 0.164 and 0.517 μg/mL. Aspergillus ochraceus contaminates agricultural products and produces nephrotoxic, carcinogenic ochratoxin A (OTA), posing severe food safety hazards. A dual-signal lateral flow immunochromatographic assay (dLFIA) based on ZrO₂@C nanoprobes was established for quantitative detection of A. ochraceus biomass. A novel monoclonal antibody (mAb 4B4) was prepared as the capture antibody to immobilize A. ochraceus mycelial lysate antigen on the test line, and a rabbit polyclonal antibody (pAb G2801) as the detection antibody to modify ZrO₂@C composites (synthesized via UiO-66 pyrolysis) into 200 nm colorimetric/photothermal nanoprobes. This dLFIA achieved limits of detection of 0.164 μg/mL (colorimetric) and 0.517 μg/mL (photothermal). This efficient and reliable method allows quantitative analysis of A. ochraceus biomass, which is suitable for routine monitoring of fungal contamination in agro-food matrices.
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