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Surface Enhanced Raman Spectroscopy Detection of Biomolecules Using EBL Fabricated Nanostructured Substrates
Published on: March 20, 2015
Iron Oxide-Based Surface-Enhanced Raman Spectroscopy Bioprobes for Detecting Tumor Cells in Serous Effusion
Jiabao Guo1,2,3, Lei Xu1,2,3, Jing Wang1
1Department of Ultrasound Medicine, The First Affiliated Hospital, Zhejiang University School of Medicine, Hangzhou, Zhejiang 310003, P.R. China.
Abstract:
Serous effusions, including pleural effusion and ascites, commonly occur in advanced cancers like lung and ovarian carcinomas. Detecting tumor cells in these effusions is crucial for assessing cancer metastasis. However, clinical methods mainly include cytological examination, which has limited sensitivity, and complex cell block technology that requires large volumes of serous effusion. Surface-enhanced Raman spectroscopy (SERS), with its high sensitivity and noninvasive nature, has emerged as a crucial tool for liquid biopsies. Building on this technology, a novel SERS bioprobe was specifically designed for the precise identification and capture of tumor cells in serous effusions, utilizing a composite material. The SERS bioprobes offer strong SERS enhancement, excellent spectral reproducibility, and molecular targeting, thereby enhancing detection specificity. Furthermore, SERS classification models were established to categorize samples based on tumor cell concentrations in serous effusions, enabling semiquantitative diagnostic capability. Notably, machine learning-assisted analysis enables rapid processing and classification of numerous Raman spectra and thorough feature extraction and greatly improves the SERS bioprobe's diagnostic accuracy. Consequently, the combination of SERS bioprobes and machine learning provides a rapid and effective detection method that overcomes the low sensitivity of conventional cytological detection in serous effusions and enables assessment of tumor cell concentration ranges within these fluids.
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