Discover how chemists synthesized aigialomycin D, a potent anti-malarial and anti-cancer compound, through innovative total synthesis strategies.
Exploring how biomass-derived platform molecules and catalytic upgrading can transform agricultural waste into valuable fuels and chemicals.
Discover how synthetic biology and natural product chemistry are converging to create sustainable drug production using sunlight and CO₂.
Explore how empirical methods and accidental discoveries revolutionized medicine through the story of antibiotic discovery.
Exploring the impact of silver nanoparticles on estuarine microbial communities and their surprising resilience to contamination.
Discover how microwave-assisted extraction (MAE) is transforming plant waste into valuable bioactive compounds with unprecedented efficiency and sustainability.
Discover how non-intercalative triterpenoids inhibit topoisomerase II without DNA damage, offering safer cancer therapy alternatives.
Exploring how nature's chemistry is revolutionizing agriculture through bioorganic solutions and sustainable practices.
Discover how nanotechnology enables visualization of chrysin nanoparticles destroying cancer cells through advanced imaging techniques like flow cytometry and FTIR spectroscopy.
Exploring the biochemical marvel of Cedrus atlantica and its production of himachalenes and atlantones - nature's sophisticated chemical language with therapeutic potential.