How a 250-year-old theorem is helping scientists untangle the complex pathways of cancer growth using Bayesian probability and mutual exclusivity.
Discover how pathway-based mutation analysis is transforming cancer research by revealing how mutations collectively disrupt biological systems.
Discover how bacterial DNA integrates into human cancer genomes, challenging our understanding of cancer biology and opening new frontiers in treatment.
Explore how computational phylogenetics is transforming cancer research by tracing tumor evolution through evolutionary trees and DNA analysis.
Explore how small-molecule protein kinase inhibitors are transforming cancer treatment by targeting metastasis, the true danger of cancer.
Discover how NF-κB, STAT3, and AP-1 form an inflammatory network that drives cancer progression and enables personalized treatment approaches.
Discover how mutations target regulatory elements in cancer genomes and the new tools revealing these hidden patterns.
Exploring tumor heterogeneity and the cancer stem cell model in luminal-like breast cancer
Discover how cancer cells use backup systems to resist targeted therapies through MTH1-independent 8-oxodGTPase activity.
Discover how scientists are targeting the 'undruggable' KRAS gene by reactivating the PP2A tumor suppressor in cancer treatment.