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Non-invasive liquid biopsy is a promising strategy for ovarian cancer (OC) detection. We evaluated the feasibility and efficacy of a multi-analyte approach combining circulating tumor DNA (ctDNA) detection with protein biomarkers for early OC detection. At 95% specificity, CA125 and ctDNA alone exhibited an overall sensitivity of 79.0% and 58.7%, respectively; however, when CA125 was combined with ctDNA, sensitivity reached 85.5%. Integrating CA125 and human epididymis protein-4 (HE4) in the risk of ovarian malignancy algorithm (ROMA) index, yielded a sensitivity of 86.2%. When four additional proteins (HE4, cancer antigen 19-9, prolactin, and interleukin-6) were added to CA125 and ctDNA in the EarlySEEK model, sensitivity increased to 94.2%. Meanwhile, the EarlySEEK model was not affected by menopausal status, and outperformed CA125 in distinguishing benign and malignant ovarian tumors. These findings demonstrate that EarlySEEK could effectively identify OC at early stage when they are more likely to be curable.
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http://dx.doi.org/10.1016/j.isci.2025.112617 | DOI Listing |
Front Oncol
August 2025
Department of Medical Oncology and Therapeutics Research, City of Hope, Duarte, CA, United States.
Circulating tumor DNA (ctDNA) has emerged as a promising biomarker for the early detection of esophageal cancer (EC), offering a minimally invasive means to assess tumor-derived genomic and epigenomic alterations. This review synthesizes current data on ctDNA biology, detection technologies, diagnostic performance, and clinical applicability in both esophageal adenocarcinoma and squamous cell carcinoma. We conducted a comprehensive literature review of PubMed-indexed studies on ctDNA in EC, emphasizing recent (January 1, 2019- December 31, 2024) findings, systematic reviews, and meta-analyses.
View Article and Find Full Text PDFSurface-enhanced Raman scattering (SERS) spectroscopy represents a powerful analytical platform that combines non-destructive, label-free molecular identification with exceptional sensitivity for trace-level detection. Its capacity to generate information-rich spectral fingerprints makes SERS particularly advantageous for simultaneous multi-analyte analysis across diverse sample matrices, including complex biological systems. This study addresses the analytical challenges associated with identifying and quantifying multiple molecular species in complex environments by integrating SERS with advanced machine learning methodologies.
View Article and Find Full Text PDFBiomolecules
August 2025
Department of Life Sciences, School of Life and Health Sciences, University of Nicosia, 2417 Nicosia, Cyprus.
Heart failure (HF) is a leading cause of morbidity and mortality worldwide, underscoring the need for improved diagnostic, prognostic, and therapeutic strategies. Circulating microRNAs (c-miRNAs) have emerged as promising non-invasive biomarkers due to their stability, tissue specificity, and regulatory roles in cardiac pathophysiology. This review highlights the potential of c-miRNAs in enhancing HF diagnosis, risk stratification, and therapeutic monitoring, particularly when integrated with conventional biomarkers such as natriuretic peptides, galectin-3, soluble ST2, and high-sensitivity troponins.
View Article and Find Full Text PDFSemin Ophthalmol
August 2025
Centre for Ocular Regeneration, Brien Holden Eye Research Centre, Champalimaud Translational Centre for Eye Research, LV Prasad Eye Institute, Hyderabad, India.
Purpose: The dry eye disease(DED) is caused by many possible factors, manifesting classical symptoms such as irritation, pain, and visual disturbance, which can severely impact the quality of life. This review aims to critically evaluate currently available point‑of‑care (POC) diagnostic kits for DED, focusing on osmolarity‑based and biomarker‑based assays, while exploring emerging technologies that promise better precision and personalized management.
Methods: A comprehensive literature survey (2010-2025) was undertaken using PubMed, Scopus, and Google Scholar to identify studies assessing DED pathophysiology, tear film biomarkers, and commercially available diagnostic systems.
NPJ Sci Food
August 2025
Institute of Agricultural and Biosystems Engineering, ARO, Volcani Institute, Rishon LeZion, Israel.
Toxigenic mold contamination in food and agricultural commodities affects a quarter of the world's crops with massive economic losses and consequential health risks. Herein, we present a newly developed nanostructured microarray based on silver-coated porous silicon (Ag-pSi) used as a surface-enhanced Raman scattering (SERS) transducer. The internal porous void and pore morphology were optimized to amplify the SERS effect while achieving an enhancement factor of 1.
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