Explore the fascinating science behind polyesters, their synthesis, properties, and groundbreaking applications in medicine that could transform how we treat diseases.
Explore Timothy Deming's groundbreaking work with synthetic polypeptides that bridges materials science and biology, enabling revolutionary medical applications from spinal cord repair to targeted cancer therapy.
Exploring the dynamic mechanical relaxation of PHEA-silica nanocomposites created through the sol-gel method and their applications in biomedicine.
Exploring the complex relationship between BPA in dental resins and human health, and the innovations driving safer dental biomaterials.
Explore how PLLA/nCaP bone implants dynamically transform to guide tissue regeneration through surface morphology changes in physiological environments.
Explore the revolutionary world of bio-responsive hydrogels - smart materials that sense and respond to biological signals for advanced medical applications.
Explore how metal-organic frameworks (MOFs) are revolutionizing medicine through bone regeneration, targeted drug delivery, and advanced biomaterials.
Discover how polymers guide hydroxyapatite nanoparticle growth for advanced bone repair and biomedical applications.
Explore how natural sugar polymers pullulan and dextran are transforming bone tissue engineering through innovative scaffold technologies for bone regeneration.
Explore how polymers are revolutionizing bioelectronics and creating seamless interfaces between artificial materials and living biological systems.