Delves into metabolic pathways, energy-rich compounds, and fermentation processes, emphasizing the importance of biofuels as an alternative to fossil fuels.
Explores the mathematical analysis of genetic circuits and the implementation of synthetic plasmids in E. coli, focusing on the concept of limit cycle oscillators.
Explores metabolic signaling through glycolysis, the Warburg effect, and glycolytic switches in cancer, emphasizing ATP as the universal energy carrier.
Explores metabolic signaling, glycolysis, cancer switches, and a case study on breast tumor aggressiveness through integrated proteomics and metabolomics.
Discusses the integration of metabolic pathways, focusing on gluconeogenesis and glycolysis, and their hormonal regulation in maintaining glucose homeostasis.