Explore how metabolic engineering of Shewanella oneidensis is revolutionizing microbial fuel cell technology for sustainable energy production.
Discover how synthetic biology is reprogramming baker's yeast to produce valuable trans-cinnamic acid derivatives like vanilla and cinnamon flavors.
Explore the latest advances in understanding and treating neonatal and childhood pulmonary vascular disease, including PPHN, pediatric PH, and innovative diagnostic approaches.
Explore how hyperglycemia-induced oxidative stress alters our genetic and epigenetic blueprint, leading to metabolic diseases and long-term health consequences.
How Design of Experiments is revolutionizing the creation of living factories for sustainable production
Exploring advances in genetic circuit design for cellular computing, including predictive modeling in plants and future prospects for biological programming.
Explore how tobacco smoke disrupts cellular respiration pathways, damages lung defenses, and leads to chronic respiratory diseases through advanced scientific research.
How scientists are hacking plant-microbe relationships to protect our food supply from the cold using engineered bacteria with ACC deaminase genes.
Discover how scientists are reprogramming E. coli bacteria to produce valuable (-)-α-bisabolol sustainably through metabolic engineering.
Explore how cell-free synthetic biology is revolutionizing medicine, manufacturing, and environmental science by programming biological reactions without living cells.