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◆ Biosensors & bioelectronics2026-08-27

An integrated protein detection platform based on "lock-and-cage" sensors and digital microfluidics.

Guijie Bai, Yanning Zhang, Xin Huang, Hongxiang Li, Yue Jiang, Xinran Li, Long Li, Xinyue Cao, Leilei Wang, Peiwen Li, Duo Liu, Peiyuan Liu, Hanjie Wang

原始摘要(英文原文)· Original abstract
Data-driven protein engineering has enabled biosensors that directly couple molecular recognition with measurable signal outputs, providing a powerful strategy for rapid protein analysis. However, their integration into automated and portable analytical systems remains limited. Here, we developed an integrated photoelectrochemical and fluorescence digital microfluidic (PF-DMF) platform for automated biomarker detection by combining a programmable "lock-and-cage" protein sensor (LucCage/LucKey) with precise digital microfluidic manipulation. The platform enabled automated detection of human tumor necrosis factor-α (hTNF-α) with a detection limit of 0.1 μM over a linear range of 0.1-10 μM, while exhibiting high specificity, good reproducibility, and minimal sample consumption. Direct analysis of hTNF-α in simulated body fluids was achieved without complex sample pretreatment. The platform was further extended with a CRISPR-based nucleic acid sensing module, enabling nucleic acid detection of Salmonella typhimurium (S. typhimurium) within the same automated workflow. In addition, a standardized reagent kit maintained stable analytical performance for at least 30 days under appropriate storage conditions. Overall, the proposed PF-DMF platform provides a versatile and scalable strategy for automated multimodal biomarker analysis, offering significant potential for portable diagnostics in healthcare and food safety.
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An integrated protein detection platform based on "lock-and-cage" sensors and digital microfluidics. — 科研速览 Science Skim