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Updated: Oct 3, 2026

Candida albicans Biofilm Chip (CaBChip) for High-throughput Antifungal Drug Screening
Published on: July 18, 2012
Detection of Candida albicans by a sandwich assay using boronate affinity microspheres coupled with amphotericin
Han-Yue Li1, Han Zhang1, Zheng-Xiao Cai1
1Tianjin Key Laboratory on Technologies Enabling Development of Clinical Therapeutics and Diagnostics, School of Pharmacy, Tianjin Medical University, Tianjin, 300070, People's Republic of China.
Abstract:
Candida albicans (C. albicans) is an opportunistic pathogenic fungus that poses a threat to public health and food safety, while conventional detection methods suffer from high costs, complicated procedures, and insufficient sensitivity. Here, a novel biomolecule-free sandwich detection platform was constructed to quantitatively detect C. albicans by integrating phenylboronic acid-functionalized magnetic microspheres (PFSEPD) and amphotericin B-labeled time-resolved fluorescent microspheres (ATFM). The stepwise synthesis of PFSEPD was verified through multiple characterizations, and the as-prepared PFSEPD exhibited favorable monodispersity, rapid magnetic responsiveness, and low preparation cost, with adsorption data well fitted by the Langmuir isotherm and pseudo-second-order kinetic models. Meanwhile, the ATFM signal probe was synthesized by covalently grafting amphotericin B (AmB) onto carboxylated time-resolved fluorescent microspheres (TFM). In the established dual-chemical recognition sandwich system, PFSEPD rapidly captured the fungus through boronate-cis-diol specific affinity, while ATFM selectively labeled the captured C. albicans through AmB-ergosterol interactions. After elution with SDS buffer, the fluorescent signal of the released ATFM was quantitatively measured. The PFSEPD-ATFM detection strategy achieved limits of detection (LODs) of 46 and 40 CFU mL-1 in milk and honey, respectively, with recoveries of 96.2%-101.8% and relative standard deviations (RSDs) less than 5.0%. This dual-chemical recognition sandwich system provides a facile, sensitive alternative for the rapid and quantitative detection of C. albicans.
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