Explore how Fe-Cr-Nb-B magnetic particles and adipose-derived mesenchymal cells trigger cancer cell apoptosis through magneto-mechanical actuation.
Explore how daratumumab enables in vivo purging to cleanse stem cell grafts before transplant, reducing relapse risk in multiple myeloma patients.
Explore how scientists use primary cell lines and explant techniques to study oral squamous cell carcinoma, advancing personalized cancer treatments.
Explore how synthetic polymers are transforming gene therapy by safely delivering therapeutic genes to target cells, overcoming the limitations of viral vectors.
Discover how Lactiplantibacillus plantarum L125, a probiotic strain, shows promising anti-cancer properties through genomic analysis and experimental studies.
Discover how HER2 gene suppression of PPARγ in breast cancer creates new therapeutic opportunities through combination drug therapy.
Explore how scientists analyze T cell responses to understand our immune system's elite special forces and develop revolutionary medical treatments.
Explore how adoptive cell therapy revolutionizes cancer treatment by reprogramming immune cells as living drugs to fight cancer with unprecedented precision.
Explore how Japan's strategic biotech investment is driving innovation in personalized medicine, gene therapies, and AI-powered drug discovery.
Discover how auto-fluorescence imaging and power-sharing multifocal Raman micro-spectroscopy are transforming cancer surgery by enabling real-time molecular tissue analysis.