A handheld sensor system combining silver nanorod substrates, surface enhanced Raman scattering, and machine learning to rapidly screen and identify bacteria and fungi in aqueous samples. Targets a limit of detection below 10 CFU/ml, per-test cost under $10, and detection times well under 2 hours, enabling fast on-site testing for food safety, clinical diagnostics, and water quality applications.
This solution offers a portable, handheld Raman spectrometer platform designed for the rapid detection and identification of microbial contaminants in aqueous solutions. By combining silver nanorod (AgNR) based surface enhanced Raman scattering (SERS) substrates with machine learning algorithms, the system can screen, differentiate, and identify a wide range of bacteria and fungi in minutes rather than hours. The technology addresses critical needs in food safety, clinical diagnostics, water quality monitoring, and agricultural testing, where conventional culture-based methods are slow, labor-intensive, and require laboratory infrastructure. The proposed platform aims to deliver a limit of detection below 10 CFU/ml at a cost of less than $10 per test, making large-scale, on-site microbial screening practical and affordable.
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The technology is currently at a mid-to-late stage of development. Proof-of-concept studies have been completed using AgNR-SERS substrates with 27 different bacterial isolates, demonstrating species-level differentiation, serotype and strain-level resolution, and reliable Gram classification. A portable handheld Raman system has been validated on foodborne pathogens in mung bean sprouts, achieving detection at 100 CFU/ml in under 4 hours. Future validation efforts over the next year will focus on expanding the spectral library to include additional bacteria and fungi, refining machine learning models to push sensitivity toward 10 CFU/ml, and improving substrate consistency and reliability. Collaborative work with the Center for Food Safety at the University of Georgia will provide access to diverse microbial samples for training and validation. The platform is ready for sponsored research partnerships aimed at field validation, co-development of application-specific workflows, and pilot deployments in food processing, healthcare, and environmental monitoring settings.
The University of Georgia is a comprehensive public land‑grant research university serving a large student body across multiple campuses, known for applied scholarship and community partnership. Industry partners access core facilities and pilot‑scale capabilities—including the Food Product Innovation and Commercialization Center—for prototyping, scale‑up, and product validation. A downtown Innovation District and a statewide Cooperative Extension network link campus expertise to companies across Georgia, while proximity to Atlanta’s corporate and logistics hubs lowers barriers to engagement. Research is supported by competitive federal funding from agencies such as NIH, NSF, USDA, and DOE. A dedicated technology transfer office provides IP services, licensing, startup support, and incubator space to accelerate commercialization.