Explore the fascinating world of peptide and peptide-hybrid materials, their solution behavior, computational design, and future applications in medicine and technology.
Explore how genetically engineered silk-elastin-like protein polymers (SELPs) are revolutionizing medicine through tunable self-assembly for drug delivery and tissue regeneration.
Comprehensive review of biomaterials constructed through noncovalent interactions of small molecules, their design principles, and biomedical applications.
Explore how scientists engineer self-assembling protein fibers with precise morphology for next-generation medical and sustainable materials.
Explore how self-assembled nanomaterials are revolutionizing drug delivery with precision targeting and controlled release mechanisms.
Explore how scientists engineer nanomaterials at the atomic scale to create substances with revolutionary properties for medicine, energy, and technology.
Exploring the revolutionary field of nanomaterial self-assembly and its applications in regenerative medicine and targeted therapy.