Explore how subcellular proteomics is revolutionizing our understanding of cellular organization and its implications for disease treatment.
Explore how genome-scale in silico models are transforming biology into a predictive science through computational reconstructions of living cells.
Explore how 13C Metabolic Flux Analysis revolutionizes our understanding of cellular metabolism and its applications in systems biology and metabolic engineering.
Researchers pioneer a new strategy using engineered Lactobacillus plantarum bacteria to efficiently break down tough lignocellulose from agricultural waste.
Discover how metabolic engineering of Corynebacterium glutamicum is revolutionizing L-cysteine production, replacing unethical hair hydrolysis with sustainable fermentation.
Explore how scientists use computer simulations to predict biochemical enhancements for microbes by adding virtual reactions to metabolic models.
How scientists engineered Sphingobium chlorophenolicum to degrade the persistent pollutant hexachlorobenzene (HCB) through metabolic engineering.
How scientists are reprogramming E. coli's metabolism to convert biodiesel waste (glycerol) into valuable acetol through metabolic engineering
Exploring how lactate-releasing PLA scaffolds are revolutionizing brain regeneration by mimicking nature's repair mechanisms.
Scientists are reprogramming oil-producing yeast to manufacture ricinoleic acid, the key component of castor oil, without using castor beans.