Explore the fascinating science of polymer networks that give materials their unique properties, from biological tissues to synthetic materials.
Discover how advanced coacervation creates nanoscale polymeric assemblies for targeted drug delivery and biomedical applications.
Explore how new light-emitting probes are transforming biomedical research through sensitive detection of biomolecules and live cells.
An in-depth analysis of the historic merger between University of Manchester and UMIST that created a UK science powerhouse
Exploring how nanoparticle size dramatically affects platinum's catalytic performance in hydrogenation reactions
Explore how ruthenium and gold compounds are revolutionizing medicine through targeted cancer therapies and innovative drug design approaches.
Explore how patchy protein interactions enable self-assembly of biological structures and their applications in medicine and materials science.
Explore how synthetic biology is revolutionizing medicine through programmed living cells and standardized biological parts, supported by Synberc and IWBDA.
Explore how protein-based hydrogels are transforming biomedical applications from drug delivery to tissue engineering.
Discover how activatable fluorescent probes are revolutionizing our understanding of intracellular magnesium dynamics and cellular health.