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Updated: Jul 1, 2026

The Use of a β-lactamase-based Conductimetric Biosensor Assay to Detect Biomolecular Interactions
Published on: February 1, 2018
Magnetic nanoparticles enable clinically relevant in vitro diagnosis of β-lactam allergy
Jose A Céspedes1,2, Maria I Montañez1,2,3, Isabel M Jiménez1,2
1Precision Allergy Translational Hub (PATH), Allergy Group, IBIMA Plataforma BIONAND, Instituto de Investigación Biomédica de Málaga, Parque Tecnológico de Andalucía, Málaga, 29590, Spain.
Abstract:
β-lactam antibiotics are the leading cause of drug-induced hypersensitivity reactions. Yet available in vitro diagnostics still show limited sensitivity, specificity and reproducibility. In this work, we report the use of magnetic silica-coated nanoparticles functionalized with dendrimeric antigen conjugates (DeAn@Np) for an improved in vitro detection of β-lactam-specific IgE. These nanoparticles possess a high surface area and combine the chemical versatility of silica with the magnetic properties of iron oxide, enabling efficient magnetic separation and reducing assay handling times compared with centrifugation-based workflows. The chosen nanoparticle size (30 nm) was evaluated in immunoassays using sera from 50 amoxicillin-allergic patients and 44 tolerants, achieving 98% sensitivity and outperforming both conventional RAST (38%) and commercial ImmunoCAP (17%) in this cohort, with sensitivity gains of up to 60% (p < 0.0001). Remarkably, DeAn@Np discriminates effectively between selective and cross-reactive allergic patients, minimizing false positives and negatives with a 100% of specificity compared to conventional RAST (70.4%) (p = 0.005). These results highlight the potential of DeAn@Np as a sensitive and modular platform for β-lactam allergy diagnosis, combining improved analytical performance with practical advantages for future translational immunodiagnostic applications and safer penicillin allergy delabelling. Beyond drug allergy, these modular dendrimer-based magnetic nanoparticles can be extended to other antibody targets, offering a versatile strategy for immunodiagnostic applications.
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