Discover how scientists are creating thermoresponsive biomaterials inspired by squid teeth using artificial polypeptides for applications in medicine and robotics.
Discover how emulsion templating technology is revolutionizing tissue engineering by creating advanced scaffolds for bone regeneration and tissue repair.
Discover how scientists are combining ancient silk with cutting-edge MOF technology to create revolutionary wound care solutions that actively promote healing.
Exploring the biological challenges of cartilage regeneration and the cutting-edge scientific approaches attempting to solve this medical puzzle.
Discover how hybrid silicon-based biomaterials are revolutionizing drug delivery, orthopedic implants, tissue engineering, and bioelectronics through advanced material science.
Discover how eggshells and their membranes are being transformed into powerful biomaterials for healing wounds, repairing bones, and regenerating tissues.
Discover how mesenchymal stem cells combined with innovative scaffolds containing chitosan, calcium polyphosphate and pigeonite are advancing bone tissue engineering.
Discover how bone tissue engineering offers revolutionary solutions for healing segmental bone defects in diabetic patients through advanced biomaterials and stem cell technology.
Discover how a high school STEM program uses cyclic stretch devices to teach tissue engineering and inspire the next generation of scientists.
Discover how the structured abstract template serves as a critical communication tool in scientific publishing and determines research impact.