Discover how hydrophilic modification transforms hydrophobic aliphatic polyester biomaterials into revolutionary medical solutions for tissue engineering and drug delivery.
Explore Linus Pauling's revolutionary work on chemical bonding and molecular structure that transformed chemistry at Caltech and shaped modern science.
Explore how systems biology is transforming therapeutic protein production through advanced cell line engineering for complex post-translational modifications.
Discover how mussel-inspired adhesive proteins are transforming medical technology, enabling revolutionary implants and biosensors through nature's brilliant design.
Discover how redox conditions create an ultrafast chemical switch that optimizes energy transport in plant photosynthesis, revolutionizing our understanding of nature's solar panels.
Exploring the progress in metabolic engineering of animal cells for biopharmaceutical production, cultivated meat, and cellular agriculture.
How scientists are using host-guest complexation to create programmable supramolecular peptide amphiphile vesicles for advanced drug delivery.
Discover how high blood sugar triggers adipose-tissue-derived microvascular fragments to rapidly form new blood vessel networks, a key mechanism in diabetic complications.
Explore how scientists are modifying hyaluronic acid to create revolutionary biomedical applications in drug delivery, tissue engineering, and cosmetics.
Explore how biomedical signal-image processing and computational modeling are revolutionizing healthcare by decoding the body's signals for predictive medicine.