ChemistryBiologyMedicine

Yige Sun, C. Zheng, Yuxuan Shi, Mingyuan Sun, Chao Wang, Lin Han, Yu Zhang, T. Hou, Le Qiang

2026.1.1Biosensors-Basel

DOI: 10.3390/bios16010035

tlooto Summary

A dual-mode biosensor based on gold nanoparticles and aptamers for screening high-affinity aptamers for Candidalysin reveals a specific aptamer with high affinity for Candidalysin, presenting a significant advancement in candidiasis treatment.

Abstract

Candida albicans poses significant health risks through its virulent peptide toxin Candidalysin. As no existing therapeutics specifically target this toxin, developing high-affinity aptamers for its efficient and safe removal is urgently needed. In response, we developed a dual-mode biosensor based on gold nanoparticles (AuNPs) and aptamers for screening high-affinity aptamers for Candidalysin. This biosensor leverages the localized surface plasmon resonance (LSPR) phenomenon and surface-enhanced Raman scattering (SERS) of AuNPs to detect changes in color and Raman signals, respectively, indicative of high-affinity aptamer for Candidalysin presence. This dual-mode capability reduces false-negative signals and enhances detection accuracy. Our findings reveal a specific aptamer with high affinity for Candidalysin, presenting a significant advancement in candidiasis treatment. This work sets the stage for the development of effective therapeutic strategies against Candida infections.

Citation format

SUN, Yige, et al. Discovery of the high-affinity aptamer for candidalysin using a dual-mode colorimetric–sers platform. Biosensors-Basel, 2026, 16(1): 35.