Multi-Omics Study Identifies Three High-Confidence Therapeutic Targets for Glioblastoma
Researchers integrated brain protein and gene data to identify EGFR, SCFD1, and GMPPB as promising new targets for treating deadly brain cancer.
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Researchers integrated brain protein and gene data to identify EGFR, SCFD1, and GMPPB as promising new targets for treating deadly brain cancer.
Multi-omics study reveals how altered gut microbiome in autistic children produces specific proteins and metabolites that cross the blood-brain barrier.
Advanced computational methods integrate genomics, metabolomics, and AI to accelerate discovery of bioactive compounds from natural sources.
Multi-omics analysis reveals SASH1 protein loss predicts worse outcomes in head and neck cancer patients and guides targeted therapy selection.
Self-amplifying mRNA vaccine using COBRA technology provides long-lasting immunity against seasonal influenza with just one dose.
Researchers discover how cancer cells use lysosomes to resist RNA polymerase inhibitors and develop combination strategies to overcome this resistance.
Stanford Data Ocean provides free bioinformatics education with AI tutors, reaching 3,594 learners globally including underserved communities.
Comprehensive analysis of respiratory infection deaths and causes from 1990-2023 shows persistent global health challenge.
Leading cancer experts reveal breakthrough strategies combining radiation with immune treatments to boost cancer-fighting effectiveness.
Large study finds work stress causes burnout but doesn't speed biological aging through DNA methylation changes.
Study of 833 people finds depression linked to premature biological aging in both brain structure and DNA methylation patterns.
Large genetic analysis reveals how biological aging markers influence thrombosis risk, offering new prevention insights.