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Fabricating a SMVF@GO@Ag Composite Aerogel SERS Sensor for the Enrichment and Label-Free Detection of Urinary VOCs
Haonan Wang1, Luyao Lin1, Shenlei Lu2
1College of Chemistry and Materials Science, Fujian Provincial Key Laboratory of Advanced Oriented Chemical Engineer, Fujian Key Laboratory of Polymer Materials, Engineering Research Center of Industrial Biocatalysis, Fujian Province Higher Education Institutes, Fujian Normal University, Fuzhou, Fujian 350007, China.
Abstract:
The detection of volatile organic compounds (VOCs) in urine is a noninvasive diagnostic technique with tremendous promise, holding great potential for early screening, auxiliary diagnosis, and progression monitoring of urinary system diseases. We developed a machine learning-assisted surface-enhanced Raman spectroscopy (SERS) strategy for the highly efficient enrichment and detection of urinary VOCs, aiming to achieve early screenings of chronic kidney disease (CKD). A composite aerogel, SMVF@GO@Ag, was fabricated as a SERS substrate, exhibiting a detection limit of 9.55 × 10-11 M for 4-MBN and a BET specific surface area of 5.57 m2/g. This substrate was integrated into a centrifuge tube to construct a VOC sensor, which was used for the enrichment of urinary VOCs and the collection of SERS spectral data. Subsequent application of machine learning for feature extraction and pattern recognition of the acquired SERS data set enabled, for the first time, the label-free collection of full-spectrum SERS data from urinary VOCs and the successful construction of a predictive model for CKD (with AUC > 0.95 on the ROC curve of DT, KNN, RF and SVM). Our study provides an innovative, highly sensitive, and low-cost solution with significant clinical translational value for advancing large-scale noninvasive screening of CKD.
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