Discover how systems metabolic engineering transforms E. coli into sustainable factories for producing bio-based cadaverine as an alternative to petroleum chemicals.
Exploring lipid catabolism in eukaryotic microalgae and its applications in biofuel production and carbon capture.
Discover how nanoparticles are enhancing plant tolerance to salinity and drought stress through cutting-edge agricultural nanotechnology.
Explore how platelet-derived extracellular vesicles (pEVs) are revolutionizing cancer diagnosis and treatment through their dual roles in cancer progression and therapeutic applications.
Discover how genome-wide analysis of yeast species reveals complex genetic incompatibilities challenging traditional speciation models.
Discover how the identification of RoCYP01 enables engineered yeast to produce betulinic acid, a promising anti-cancer compound, sustainably and efficiently.
How synthetic biologists are rewiring E. coli's regulatory systems to transform plant waste into valuable bioproducts through metabolic engineering.
Discover how drug-induced hybrid electrospun PCL: cell-derived ECM scaffolds are revolutionizing liver tissue engineering and transplantation.
Explore how plant metabolic engineering transforms plants into biofactories for medicines, biofuels, and sustainable materials.
Discover how scientists are revolutionizing lutein production using Chlorella microalgae through adaptive evolution and nutrient enhancement techniques.