Explore Dr. Sang Yup Lee's groundbreaking work in metabolic engineering, transforming microbes into bio-factories for sustainable production of fuels, plastics, and medicines.
Discover how MOE-PCR transforms synthetic biology with high-throughput DNA assembly techniques, enabling rapid genetic engineering breakthroughs.
Discover how Galdieria sulphuraria's Rubisco enzyme with its unique active site closure mechanism could transform carbon capture and crop engineering.
Discover how scientists have transformed yeast into solar-powered biofactories, unlocking new frontiers in sustainable energy, medicine, and space exploration.
Discover how Math-Physical Medicine and AI are revolutionizing Type 2 Diabetes management through personalized metabolic insights and predictive analytics.
Exploring how plant organelles like chloroplasts and mitochondria can be engineered for sustainable biotechnology applications.
Exploring how Flux Balance Analysis and Static Optimization reveal the dynamic metabolic adaptations of Shewanella oneidensis MR-1, the remarkable electricity-producing bacterium.