Novel Therapeutic Strategies For Pancreatic Cancer Using Next Generation Sequencing
Funder
National Health and Medical Research Council
Funding Amount
$354,892.00
Summary
Dr David Chang is a surgeon scientist who specialises in the treatment of pancreatic cancer. His research focus is on the development and implementation of novel therapeutic strategies for pancreatic cancer. He aims to achieve this by utilising novel biomarkers that have the ability to forecast prognosis and response to treatments. Ultimately, this will lead to the “individualised” treatment for each patient.
The Ludwig Institute is adopting a two prong approach in the fight against cancer. Ludwig scientists are developing improved and sensitive scanning methods to aid in the conduct of field trials of new anti-cancer antibodies. In addition, they are also developing new targeted anti-cancer antibodies with improved properties that have the ability to bind to tumours while sparing normal tissues. These drugs can either attack the cancer directly or be used to carry drugs to the target thereby shrinki ....The Ludwig Institute is adopting a two prong approach in the fight against cancer. Ludwig scientists are developing improved and sensitive scanning methods to aid in the conduct of field trials of new anti-cancer antibodies. In addition, they are also developing new targeted anti-cancer antibodies with improved properties that have the ability to bind to tumours while sparing normal tissues. These drugs can either attack the cancer directly or be used to carry drugs to the target thereby shrinking the tumour.Read moreRead less
Molecular Determinants Of Risk, Progression And Treatement Response In Melenoma
Funder
National Health and Medical Research Council
Funding Amount
$12,947,193.00
Summary
Melanoma is a major Australian health problem. It is the third most common cancer in men and women and has a disproportionately heavy impact on productive years of life because it is the common cause of cancer death in younger adults. The investigators are all associated with the Melanoma Institute Australia, incorporating the Sydney Melanoma Unit (SMU). MIA is the world’s largest clinical service dedicated to the treatment of melanoma, treating >1500 new melanoma patients annually and mainta ....Melanoma is a major Australian health problem. It is the third most common cancer in men and women and has a disproportionately heavy impact on productive years of life because it is the common cause of cancer death in younger adults. The investigators are all associated with the Melanoma Institute Australia, incorporating the Sydney Melanoma Unit (SMU). MIA is the world’s largest clinical service dedicated to the treatment of melanoma, treating >1500 new melanoma patients annually and maintains a repository of clinical data on melanoma and a large melanoma tissue bank. The Program has also recruited large numbers of people from the community, as well as people with a strong family history of melanoma, in order to study its causes. It aims to utilise these internationally-recognised resources to develop a scientific basis for 1) improved management of individuals at high risk for development and progression of melanoma, and 2) improved treatment of patients with early and disseminated melanoma, in an era of rapid change in the prospects of successfully treating this dangerous cancer. The Program will do this by consolidating and extending its existing collaborative research, supported by NHMRC since 2006.Read moreRead less
A Novel Strategy For Targeting Castrate-resistant Prostate Cancer
Funder
National Health and Medical Research Council
Funding Amount
$799,440.00
Summary
Modern drugs for advanced prostate cancer are based on starving the tumour of hormones. However, tumours either escape this treatment or are inherently resistant to it. We have developed a new approach with drugs that block protein synthesis. This deprives tumours of the building blocks to make new cancer cells. In this project, we will determine the effectiveness of this new treatment on samples of patient prostate cancer tissue that have failed currently available drugs.
Pushing AR Toward Better Outcomes In Breast And Prostate Cancers
Funder
National Health and Medical Research Council
Funding Amount
$998,754.00
Summary
Breast and prostate cancers kill >6000 Australians each year. These cancers are strikingly similar, both driven by hormone receptors that have ‘gone bad’. Current therapies aim to eradicate the receptors. While often effective, therapeutic resistance is common and results in fatal disease. We aim to develop new, less toxic treatments that switch receptor behaviour from good to bad, without destroying them. This should improve quality of life, while preventing drug resistance and loss of lives ....Breast and prostate cancers kill >6000 Australians each year. These cancers are strikingly similar, both driven by hormone receptors that have ‘gone bad’. Current therapies aim to eradicate the receptors. While often effective, therapeutic resistance is common and results in fatal disease. We aim to develop new, less toxic treatments that switch receptor behaviour from good to bad, without destroying them. This should improve quality of life, while preventing drug resistance and loss of lives.Read moreRead less
Understanding The Molecular Basis Of Inherent And Acquired Resistance To Targeted Therapies In Metastatic Colorectal Cancer
Funder
National Health and Medical Research Council
Funding Amount
$107,750.00
Summary
Targeted therapies aim to block cancer growth by interfering with specific molecules needed for its development and progression. Targeted therapies have led to improved responses and survival in patients with metastatic colorectal cancer. However, not all patients benefit from these treatments, and most patients who do respond eventually develop resistance. The aim of this research is to understand the mechanisms of resistance to these treatments, in order to improve their use in patients.
Randomised Phase II Trial Of Neoadjuvant Chemotherapy +/- Concurrent Aromatase Inhibitor Endocrine Therapy To Down-stage Large Oestrogen Receptor Positive Breast Cancer
Funder
National Health and Medical Research Council
Funding Amount
$2,302,496.00
Summary
Women diagnosed with large oestrogen receptor positive breast cancer are often treated with chemotherapy before surgery to reduce the size of the cancer, while treatment to lower oestrogen levels is given after surgery. This trial is studying if combining chemotherapy with oestrogen lowering treatment before surgery will better shrink the cancer which can improve the surgery options.
Treating Metastatic Melanoma With Stereotactic Ablative Body Radiotherapy And IMmune Pathway ACTivation (SABR-IMPACT)
Funder
National Health and Medical Research Council
Funding Amount
$185,445.00
Summary
Metastatic melanoma has historically had extremely poor survival. Drugs that activate the immune system provide some hope, and in the minority who respond survival beyond 10 years is possible. Radiotherapy causes local tumour death resulting in antigen exposure and systemic effects that may also stimulate the immune system. The combination of radiotherapy and immune activating drugs may be synergistic and result in improved survival for a greater proportion of patients.
CAPTURE: Circulating Tumour DNA Assessment Of PIK3CA To Guide Treatment Response
Funder
National Health and Medical Research Council
Funding Amount
$3,299,064.00
Summary
Many breast cancers shed small amounts of DNA (called circulating tumor DNA or ctDNA) into the patient’s bloodstream. This proposal is for a clinical trial which will examine the use of ctDNA to follow levels of a specific therapeutic target (a mutation in a gene called PIK3CA) in blood, to allow the timely introduction of a targeted therapy (PI3K inhibitor). The trial aims to lead to improved outcomes for women with estrogen receptor positive metastatic breast cancer.
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.