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January 23, 2026Nano Letters0 citations

Targeted SERS Nanoparticle Accumulation on Bacteria Enables On-Site Accurate Vibrio Typing in 10 min with AI-Powered SERS

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CZChenggang ZhangZZZeming ZhaoMWMeng Wang

Key Points

  • The aim is to develop a rapid, accurate method for Vibrio bacteria typing using AI and SERS technology.
  • Developed an AI-powered SERS platform for bacterial detection.
  • Utilized Na2HPO4-mediated interactions for nanoparticle accumulation.
  • Integrated a vision transformer model for spectral analysis.
  • Created a portable Raman instrument for quick measurements.
  • Achieved typing accuracy of 97.62% across seven bacterial species.
  • Entire sample-to-result process completed in 10 minutes.
  • Overcame issues of aggregation and reproducibility in conventional methods.

Abstract

Vibrio infections progress rapidly with high mortality, yet current diagnostics fail to meet the critical need for rapid, accurate, and field-deployable detection. To bridge this gap, we present a bioreceptor-free, AI-powered surface-enhanced Raman spectroscopy (SERS) platform for rapid Vibrio typing. Our approach leverages Na2HPO4-mediated synergistic anion/cation interactions to direct targeted accumulation of gold nanoparticles onto bacterial surfaces within 5 min, overcoming the uncontrollable aggregation and poor reproducibility of conventional methods. By integrating a gradient-weighted class activation mapping-assisted Vision Transformer model for intelligent spectral analysis with a custom-built portable Raman instrument for automated measurements, a remarkable typing accuracy of 97.62% is achieved across seven bacterial species (five Vibrio species and two interferents). The entire sample-to-result process takes only 10 min. This work establishes a new paradigm for SERS-based bacterial detection/typing and provides a promising solution for point-of-care diagnostics in public health, food safety, and environmental monitoring.

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Cite This Study

Zhang et al. (2026) studied this question.

synapsesocial.com/papers/69730fc4c8125b09b0d1f821https://doi.org/10.1021/acs.nanolett.5c05478
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