Explore how dynamic hydrogels translate microscopic protein conformational changes into visible macroscopic motion, enabling revolutionary applications in medicine and biotechnology.
Explore how radical ring-opening polymerization merges peptide therapeutics with polymer science to create advanced biomaterials and smart drug delivery systems.
Exploring the science behind BPA in dental materials, its potential health impacts, and innovations for safer dental biomaterials.
Explore how inorganic polymers with backbones built from silicon, phosphorus, and nitrogen are revolutionizing biomedical applications from tissue engineering to drug delivery.
Explore the revolutionary porous Nano-Calcium Phosphate/Poly(L-Lactic Acid) composites and their dynamic surface morphology that enables advanced bone regeneration.
Explore how shape-memory polymers are transforming dentistry with intelligent, adaptive materials that respond to oral conditions.
Exploring how DNA hydrogels are revolutionizing biomedicine through their programmability, biocompatibility, and stimulus responsiveness.
Discover how DNA's physicochemical properties are being harnessed as a multifunctional biomaterial for revolutionary biomedical applications.
How organic arsenicals are being repurposed from toxins to revolutionary biomaterials in medicine and environmental science.