Explore how plant bioengineering is transforming plants into sustainable factories for medicines, biofuels, and industrial chemicals through advanced genetic engineering and automation.
Explore how scientists are reprogramming nature's biosynthetic pathways to create advanced polymers with precisely controlled molecular structures for sustainable materials.
How researchers hijacked E. coli's protein-making machinery to incorporate fluorinated amino acids, with profound implications for drug discovery and materials science.
How baker's yeast is being engineered to produce pharmaceutical compounds like (S)-2-aminobutyric acid and (S)-2-aminobutanol through synthetic biology
Exploring how sustainable biosynthesis is revolutionizing chemical manufacturing through biological engineering and green chemistry principles.
Engineering E. coli to produce cancer-fighting Taxol precursors through synthetic biology approaches
Exploring the development of protein organelles for tunable metabolite diffusion and sequestration of multi-enzyme pathways in synthetic biology.
Breakthrough in chemoselective amide-forming ligations enables rapid creation of artificial phospholipid membranes, revolutionizing synthetic biology and drug delivery systems.