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Detection and Monitoring of Tumor Associated Circulating DNA in Patient Biofluids
Published on: June 8, 2019
Advancing Non-Invasive Diagnosis through Biomarker Detection in Biofluids
Howyn Tang1, Gary Sun2, Chao Lu2
1School of Biomedical Engineering, University of Western Ontario, 1151 Richmond Street, London, N6A 3K7, Canada.
None:
Early and accurate identification of disease-associated biomarkers is essential for timely diagnosis and the advancement of personalized healthcare. Although blood and cerebrospinal fluid remain the clinical gold standards, increasing attention is being directed toward non-invasive biofluids, such as urine, saliva, tears, and sweat. as accessible and patient-friendly alternatives. These biofluids contain diverse biomolecular signatures, including nucleic acids, proteins, metabolites, and microbial components, offering significant potential for continuous and real-time health monitoring. Recent advances in nanotechnology have transformed biomarker detection by enabling highly sensitive, selective, and rapid analytical platforms. This review provides an overview of key biomarkers associated with major diseases, including cancer, diabetes mellitus, and neurodegenerative disorders, with a focus on their presence in non-invasive biofluids. It further highlights recent progress in nanomaterial-enabled sensing strategies and the role of advanced nanostructures in enhancing detection performance. In addition, the convergence of wearable sensing technologies with artificial intelligence frameworks for continuous biomarker monitoring and intelligent disease management is also examined. Finally, current challenges and future perspectives are outlined to guide the development of next-generation, non-invasive diagnostic platforms.

