New artificial intelligence-based biomarkers offer early insight into treatment response
Findings from four studies provide further evidence on the potential of AI-driven pathology, imaging and multiomic data to guide clinical decision-making
Findings from four studies provide further evidence on the potential of AI-driven pathology, imaging and multiomic data to guide clinical decision-making
Positive findings are presented for advanced Merkel-cell carcinoma plus phaeochromocytoma and paragangliomas, while negative findings are equally important to guide future research
Precision targeting, immune modulation and rational trial design are converging to improve patient outcomes
Longer follow-up from two studies supports neoadjuvant over adjuvant immune checkpoint inhibition in patients with resectable melanoma and clinically or radiologically detectable metastasis, plus useful insights gained from biomarker analyses will help refine treatment strategies
Data from two studies suggest a good rationale for targeting T-cell dysfunction with precision immunotherapy to intercept pre-cancerous lesions
Study findings show that ctDNA is a stronger biomarker than carcinoembryonic antigen to select patients who may benefit from metastasis-directed therapy
Newly-released ESMO recommendations critically assess specific germline pathogenic variants in terms of cancer-related mortality and testing implications for patients and their families
Novel evidence demonstrates the clinical utility of circulating tumour DNA in patients with HR+/HER2- cancers harbouring ESR1 and PIK3CA mutations
Newly released recommendations address key areas to facilitate the integration of precision oncology in clinical practice
According to the 2024 ESMO Immuno-Oncology Awardee, Ton Schumacher, tackling the T-cell receptor challenge with vast datasets and cutting-edge high-throughput methods may pave the way for advances in the field
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