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Discover how ctDNA profiling assays enable comprehensive genomic analysis in cancer research, focusing on biomarker detection, analytical validation, and clinical trial applications in plasma samples.
Explore how mass spectrometry-based proteomics identifies protein-level drivers of fungal virulence, develops dual-perspective diagnostic signatures, and combats antifungal resistance through Dr. Geddes-McAlister's pioneering research.
Discover how venous blood gas analysis can diagnose and guide therapy in emergency veterinary cases. Learn to identify suitable patients, recognize key abnormalities, and understand how acid-base findings aid diagnosis.
Discover how IHC and digital pathology workflows can optimize antibody-drug conjugate development, from biomarker identification to patient selection, with practical case studies and automation strategies for enhanced cancer research.
Explore the challenges of HIV drug resistance with experts discussing global prevalence, testing methods, surveillance strategies, and emerging issues related to integrase inhibitor resistance in treatment and prevention.
Descubre los avances en diagnóstico del cáncer ovárico, enfocándote en el algoritmo ROMA y biomarcadores CA125 y HE4. Comprende las limitaciones de métodos tradicionales e integra nuevas herramientas para mejorar la precisión diagnóstica.
Explore the latest advances in ovarian cancer diagnostics with Dr. Joel Cardenas, focusing on ROMA, CA 125, and HE4 biomarkers to improve early detection, diagnostic accuracy, and patient outcomes.
Explore the challenges and approaches in interpreting genetic variants for cancer susceptibility with Dr. Alice Garrett, including reduced penetrance variants, reclassification issues, and case-control data analysis.
Discover how the Leo™ System revolutionizes protein quantitation with high-throughput automation, delivering results in as little as 3 hours and processing up to 96 samples with analytical-grade precision for cell therapy, protein degradation, and mechan…
Discover how the CGX10 Cell Isolation System enables multiparameter cell selection for advanced cell therapies, with applications in T-cell, Treg, stem cell, and NK cell therapies in a GMP-compliant, closed system.
Explore comprehensive strategies for exosome and extracellular vesicle research, from isolation techniques to detection methods, with insights on automation capabilities for cancer and cellular research applications.
Gain insights into serum free light chain assays for diagnosing and monitoring plasma cell disorders, including method standardization, reference intervals, and applications in Multiple Myeloma and Amyloidosis.
Discover advanced techniques for analyzing complex pesticide residues using Compound Discoverer software, including non-targeted methods and customized Kendrick mass defect approaches for identifying complex polymers in harvested crops.
Discover how to adapt high-throughput nucleic acid extraction methods for tree disease research, focusing on streamlined workflows, chemistry modifications for woody plant tissues, and open-platform automation techniques.
Discover how the SEISMIC facility enables spatially resolved single-cell and sub-cellular 'omics' analysis, with insights into applying single-cell lipidomics to study cancer cell responses to treatments.
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