Exploring how biocatalysis is revolutionizing industrial chemistry through enzyme-powered sustainable manufacturing processes.
Discover how Acetobacter tropicalis transforms biodiesel waste into valuable D-glyceric acid through innovative two-step biocatalysis, with potential applications in medicine and green chemistry.
Exploring how enzymes recognize and manipulate planar chirality, with recent breakthroughs in synthetic applications.
Exploring the revolutionary potential of protein-based nanoparticles in precision drug delivery, gene editing, and therapeutic applications.
Exploring how biocatalysis and engineered enzymes are transforming chemistry with sustainable solutions for pharmaceuticals, materials, and environmental challenges.
Exploring how functionalized alumina particles interact with proteins through surface charge and chemistry for biomedical applications.
How biocatalysis and biomass conversion are enabling a waste-free circular economy through nature-inspired chemical processes.
Discover how ionic liquids and enzyme immobilization transform delicate BVMOs into robust, reusable biocatalysts for sustainable chemistry.
Exploring how industrial biocatalysis is transforming chiral chemical manufacturing with nature's precision tools.
Exploring the enzymatic breakdown of cellulose, the world's most abundant organic polymer, and its applications in sustainable bioeconomy.