Fragment-based drug design yields high-affinity, selective small molecules targeting the lysosomal protein heparanase for use as PET ligands. Enables accurate imaging of lysosomes to monitor increased lysosomal activity in disease states.
This project develops small molecule binders targeting heparanase, a lysosomal protein involved in heparan sulfate turnover, for use as PET imaging ligands. Because heparanase is primarily located within lysosomes and the Golgi apparatus, selective binders enable accurate imaging of lysosomal activity, supporting monitoring of disease states associated with increased lysosomal function. The approach leverages fragment screening and structure-based drug design to produce high-affinity, highly selective compounds suitable for diagnostic imaging applications.
Key features:
The program is at an early-to-mid stage of preclinical development. Researchers have already expressed and purified heparanase in milligram quantities, screened small molecule libraries, and solved more than 30 co-crystal structures with lead fragments at micromolar potency. The next phase involves structure-based optimization to improve affinity and selectivity over a 1-2 year study period. Partnership is sought to support compound development toward high-affinity, selective heparanase binders suitable for PET ligand applications.
Australian National University is a comprehensive public research university in Canberra with a national mandate and global outlook. Industry partners access on-campus national supercomputing, micro- and nanofabrication capabilities, prototyping spaces, and clinical research pathways through affiliations with the Canberra Hospital. Proximity to Australia’s federal agencies and adjacency to CSIRO enable collaboration on policy, standards, and translational science, while a regional innovation network connects companies to talent and startups. Research is underpinned by competitive national funding, including the Australian Research Council and National Health and Medical Research Council, alongside government and industry contracts. A dedicated technology transfer office and a university-owned enterprise arm support IP, licensing, and spinout creation.