Explore the fascinating world of naturally occurring diterpenoid dimers - complex molecular structures with remarkable medicinal properties against cancer and antibiotic-resistant bacteria.
How computers promised a new golden age of drug discovery, and why scientists had to go back to the lab.
Discover how BGC Atlas revolutionizes drug discovery by exploring bacterial chemical diversity through metagenomics and bioinformatics.
Explore how combinatorial chemistry revolutionizes ethnopharmacology by combining traditional knowledge with modern drug discovery techniques.
Discover how natural product scaffolds from plants, marine creatures, and microorganisms are revolutionizing medicinal chemistry and drug discovery.
Explore how Inosine monophosphate dehydrogenase (IMPDH) is emerging as a crucial therapeutic target for cancer, infections, and other diseases through its role in GTP biosynthesis.
Explore the groundbreaking total synthesis of indotertine A and drimentines A, F, and G - a breakthrough in medicinal chemistry and drug discovery.
Explore how synthetic biology and combinatorial biosynthesis are transforming natural product discovery and drug development through innovative engineering approaches.
How scientists are using genetic blueprints to uncover nature's hidden healing compounds through genome mining and biosynthesis research.
Revolutionary strategies in drug discovery are targeting previously 'undruggable' proteins, transforming treatment options for cancer, neurology, and immunology.