Exploring the revolutionary field of synthetic genomics where scientists construct DNA molecule by molecule to rewrite life's blueprint
Exploring how ecological principles are transforming our understanding of cancer biology and leading to innovative treatment approaches.
Exploring the revolutionary field of regenerative urology using stem cells, biomaterials, and bioengineering to rebuild urinary structures.
The journey of extracellular vesicles from being dismissed as cellular debris to becoming revolutionary medical tools.
Exploring how placenta-derived mesenchymal stem cells (PL-MSCs) function differently in COVID-19 patients versus healthy individuals, offering new therapeutic potential.
Exploring how regulatory T cells use their T-cell receptors to suppress GVHD while preserving the graft-versus-leukemia effect in stem cell transplantation
Exploring how bioengineered scaffolds are revolutionizing tendon and ligament healing through tissue engineering.
Exploring why cardiovascular cell therapy showed early promise but struggled in clinical trials, and how scientists are reinventing the approach.
Breakthrough single-cell RNA sequencing study reveals key regulator of blood feeding in Schistosoma mansoni, offering new therapeutic targets for schistosomiasis.
Exploring how new-media arts-based public engagement projects are transforming generative biology through interactive installations and participatory bio-art.