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Temperature-Modulated SERS Fusion Enables Accurate Diagnosis of Clinical Fungal Pathogens

作者:Lei Jin, Qiang Wang, Xiaojun Cai, Jun Zheng, Qiaoqiao Mu, Zhixiang Mu, Qing Zhang, Xu Xie, Yuepiao Cai, Hao Chen, Jinmei Yang · 发表于:Analytical Chemistry · 年份:2025 · DOI:10.1021/acs.analchem.5c02747 · 被引用次数:3 · 研究领域:Spectroscopy Techniques in Biomedical and Chemical Research、Spectroscopy and Chemometric Analyses、Biosensors and Analytical Detection

The rapid and accurate identification of fungal pathogens remains a significant challenge in clinical microbiology. Surface-enhanced Raman spectroscopy (SERS) shows great potential for fungal diagnostics; however, achieving fast, convenient, and reproducible spectral acquisition remains difficult. Additionally, the high biochemical similarity among fungal species often leads to overlapping spectral features, limiting diagnostic accuracy. To overcome these limitations, we propose a temperature-regulated SERS spectral fusion strategy for the precise differentiation of clinically relevant fungal pathogens. Systematic profiling revealed that thermal modulation of nutrient-deprived fungi reprograms purine-associated metabolic outputs, producing distinct, temperature-specific spectral features. By integrating spectra acquired at 37, 45, 60, and 70 °C using a data-level fusion approach and applying a SoftMax-based classification model, we achieved 100% identification accuracy across both laboratory strains and clinical isolates. Notably, the thermal activation protocol significantly accelerated the SERS acquisition process, reducing the incubation time required to generate robust spectral signals from over 22 h at room temperature to just 1 h. Furthermore, the method eliminated the need for cell wall disruption, greatly simplifying sample preparation. Together, these findings underscore the potential of temperature-dependent SERS spectral fusion as a powerful tool for clinical funga...