Small Molecule Inhibitors To Reprogram The Tumour Environment And Improve Immunotherapy
Funder
National Health and Medical Research Council
Funding Amount
$784,520.00
Summary
Cancer blood vessels are different to normal blood vessels; they help cancer cells to spread and stop immune cells in their tracks. We have identified drugs which help to make cancer blood vessels more normal and also bring immune cells into the cancer core. We will test these drugs in combination with immunotherapies, a new treatment option which has not reached its full potential in the clinic. Since our drug candidates are already in clinical use, we expect to fast track clinical development.
Improving Anti-cancer Therapy By Stromal Targeting And Remodelling
Funder
National Health and Medical Research Council
Funding Amount
$673,742.00
Summary
We have developed a new drug which binds to abnormal cancer blood vessels. Upon binding, shape and tone of cancer vessels are restored and they become tighter. Our research will now test whether combining this new drug with current standard-of-care therapies such as chemo- and immunotherapy, will improve cytotoxic drugs and also make the immune system work better to fight the cancer. We also expect that tightening of blood vessels will stop cancer cells from spreading throughout the body.
Tailoring Treatment Strategies For NRF2-driven Lung Cancer
Funder
National Health and Medical Research Council
Funding Amount
$923,501.00
Summary
Lung cancer is the fifth most commonly diagnosed cancer and the most common cause of cancer-related death in Australia. Mutations in the KEAP1 gene are observed in a high number of lung cancer patients. These abnormalities are associated with poor prognosis, but may also present an opportunity to specifically target these cancer cells. We will utilise preclinical models to identify new personalised treatment strategies for patients that carry KEAP1 mutations.