Explore how scientists are engineering thermostable metabolic enzymes for improved consolidated bioprocessing organisms to revolutionize biofuel production.
Exploring how metabolic engineering transforms Pseudomonas putida mt-2 into a powerful tool for environmental cleanup of toluene and other pollutants.
Explore how Rhodobacter sphaeroides is revolutionizing membrane protein production for drug discovery, sustainable energy, and biotechnology applications.
Explore how scientists are redesigning protein-based machines to emulate and reprogram cellular metabolism for sustainable biotechnology applications.
Explore how chitosan and gelatin scaffolds with vascular networks are advancing liver tissue engineering and regenerative medicine.
Discover how engineered E. coli bacteria transform lysine into δ-valerolactam, a key monomer for sustainable nylon production, through advanced metabolic engineering.
Explore how genetic engineering of Clostridium acetobutylicum's butyrate kinase gene revolutionized biofuel production and challenged scientific models.
Scientists are teaching Pseudomonas putida to thrive on agricultural waste sugars, creating sustainable solutions for biofuels and chemicals.
Discover how Acremonium chrysogenum produces cephalosporin C, the foundation of cephalosporin antibiotics, and the scientific breakthroughs enhancing its production.
Explore how MIMETIBODY™ technology combines peptides and antibodies to create advanced therapeutics with improved stability and efficacy.