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Updated: Feb 28, 2026

Biosensor-based High Throughput Biopanning and Bioinformatics Analysis Strategy for the Global Validation of Drug-protein Interactions
Published on: December 1, 2020
A novel biomimetic opto-electronic nose combining cross-reactive peptides with selective phage display peptides for
Vanessa Escobar1, Sophie Brenet2, Charlotte Hurot2
1Grenoble Alpes University, CEA, CNRS, Grenoble INP, IRIG-SyMMES, 17 Rue des Martyrs, Grenoble, 38000, France; Grenoble Alpes University, CNRS, LIPhy, Grenoble, 38000, France.
Abstract:
The extraordinary capabilities of the biological sense of smell remain unmatched by electronic noses. Here, we present a revolutionary concept for next-generation electronic noses that integrates both specific and cross-reactive recognition principles within a single system. A novel biomimetic opto-electronic nose with enhanced performance based on Surface Plasmon Resonance Imaging (SPRI) was developed, combining cross-reactive peptides with selective Phage Display-derived peptides. Using Phage Display, five highly selective peptides were identified for detecting BTEX compounds (Benzene, Toluene, Ethylbenzene and Xylene). Experimental results demonstrate their high sensitivity and selectivity toward aromatic volatile organic compounds (VOCs), as well as the critical role of humidity in preserving peptide binding activity in the gas phase. The resulting biomimetic opto-electronic nose exhibits superior performance in the detection and discrimination of pure VOCs from various chemical families, as well as complex mixtures, including environmentally relevant pollutants. This proof-of-concept study establishes a foundation for the next generation of electronic noses, bridging biomimicry and optical sensing to achieve enhanced chemical recognition capabilities.

