Discover how microbial cell factories are revolutionizing manufacturing through biodiversity, genetic engineering, and industrial applications.
Explore ePathBrick, the synthetic biology platform revolutionizing metabolic pathway engineering in E. coli for sustainable production of medicines and fuels.
Explore how metabolic pathway engineering is transforming microbes into efficient hydrogen factories for clean energy production.
Discover how metabolic engineering transforms bacteria into microscopic factories producing medicines, fuels, and sustainable materials.
Explore how metabolic pathway engineering is reprogramming living cells to produce valuable substances from life-saving drugs to sustainable biofuels.
How scientists are reprogramming yeast and plants to produce life-saving drugs like parthenolide and artemisinin through sesquiterpene lactone engineering.
Explore how de novo biosynthetic pathway design is revolutionizing biofuel production through engineered bacteria and AI-powered synthetic biology.
Exploring the theoretical models that reveal elegant symmetries and patterns within the genetic code, from mathematical representations to synthetic biology applications.
Explore how modular optimization is transforming metabolic engineering, enabling scientists to program cellular factories for sustainable production of medicines, biofuels, and materials.
Explore the fascinating world of biological circuits - nature's programmable systems that are transforming medicine, manufacturing, and our understanding of life itself.