Exploring the dual role of autophagy in cancer development and progression through insights from mouse models
Exploring how thiamine analogs overcome cancer drug resistance through metabolic pathways and targeted therapy approaches.
Discover the fascinating biological connections between diabetes and cancer, including groundbreaking research findings and their implications for treatment and prevention.
Explore how nilotinib, a selective tyrosine kinase inhibitor, precisely targets cancer cells through rational drug design and pharmacokinetic optimization.
How a simple sugar alcohol revealed a critical weakness in liver cancer cells through metabolic reprogramming and the Warburg effect.
Explore the fascinating process of carcinogenesis - how normal cells transform into cancer through genetic mutations and acquire deadly capabilities.
Discover how platelets, the body's clotting agents, exhibit cytotoxic effects on tumor cells and their dual role in cancer progression and treatment.
Discover how cordycepin from the zombie fungus fights liver cancer through proteomic analysis of protein expression changes in BEL-7402 cells.
Explore the structural and functional analyses of human ChaC2 enzyme in glutathione metabolism and its implications for cancer treatment and cellular health.
Explore how Chromobox (CBX) proteins function as epigenetic readers in cancer development, their dual roles as oncogenes and tumor suppressors, and their potential as therapeutic targets.