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This study focuses on key endocrine pathways involved in the remodelling of the breast stromal cells into a reactive stromal environment which is more permissive for tumour growth. We have identified key pathways involved in the regulation of estrogen biosynthesis and fibrosis in tumour associated stroma. These studies will lead to the development of novel breast cancer therapies.
The Regulation Of Aromatase In The Context Of Obesity And Postmenopausal Breast Cancer.
Funder
National Health and Medical Research Council
Funding Amount
$436,601.00
Summary
Current hormone therapy for breast cancer using inhibitors of oestrogen formation results in serious side-effects including bone loss, joint pain and possibly cognitive issues. Our current work is aimed at understanding how oestrogen formation is regulated with the goal of developing breast-specific inhibitors of oestrogen formation to obviate these problems. In addition, this work is aimed at devising therapeutic intervention to break the linkage between obesity and breast cancer.
Identifying And Exploiting Novel Pharmacological Targets For Breast Cancer
Funder
National Health and Medical Research Council
Funding Amount
$431,000.00
Summary
Breast cancers are made up of different types of cancer cells, and not all cells contribute equally. A subset of cancer cells may be uniquely capable of driving tumor growth, rebuilding fatal tumors after therapy and establishing new tumors at distant sites. Identifying and exploiting the pathways that regulate the activity and survival of these cells will lead to better modes of treatment, and move towards a relapse-free future for breast cancer patients.
Characterisation And Therapeutic Targeting Of Molecular Pathways That Promote Breast Cancer Metastasis To Bone
Funder
National Health and Medical Research Council
Funding Amount
$442,573.00
Summary
Breast cancer that has spread to bone cannot be cured. Using the most clinically relevant model of breast cancer available we have identified that tumour cells growing in bone need to suppress immune elimination (by suppressing the Type I interferons) and invade through the bone tissue (by activation of cysteine cathepsins). Studying the functional role of these pathways will provide novel insight into the mechanisms of breast cancer spread to bone that can be augmented therapeutically.
This award will allow Associate Professor Marie Pirotta to continue her work in establishing whether the complementary medicines widely used in our community for cancer are actually effective and safe. Her research plans include a clinical trial of acupuncture for arm swelling after breast cancer surgery and of the nutrient lycopene, found in tomatoes, for symptoms in men after treatment for prostate cancer.
Practice- And Policy-relevant Research In Skin Cancer Epidemiology, Prevention And Screening
Funder
National Health and Medical Research Council
Funding Amount
$483,402.00
Summary
This Fellowship will enable me to lead an internationally-competitive program of research in skin cancer epidemiology, prevention & screening that will lead to improved patient and population health through impacts on clinical practice and health policy. My aim is to lead paradigm-shifting contributions in: ? Genetic epidemiology of melanoma, ? Precision skin cancer prevention & screening, and ? Public health genomics for cancer prevention.
Identifying And Characterizing Genes That Regulate Breast Tumorigenesis And Metastasis
Funder
National Health and Medical Research Council
Summary
I am a breast cancer biologist. My research focuses on identifying the changes in normal cells that allow cancer to form, and identifying the changes in cancer cells that allows them to spread. To accomplish this, I have developed new methods using mouse models of breast cancer. My goal is to use these methods to further our understanding of the causes of breast cancer development and progression.
The Role And Underlying Mechanisms Of Constitutional Epigenetic Silencing In Cancer Predisposition
Funder
National Health and Medical Research Council
Funding Amount
$218,617.00
Summary
Familial and young onset bowel and uterine cancer are usually caused by the inheritance of spelling mistakes in the genetic code within a set of cancer-protection genes. Recently, some patients were identified with their gene switched off by paralysing chemicals instead. This study aims to identify additional cancer cases with gene paralysis, determine if this arises in the presence or absence of a genetic change in front of the gene, and how gene paralysis is transmitted to the next generation.
Novel Point-of-care Screening And Treatment Interventions To Improve Pregnancy Outcomes And To Prevent Cervical Cancer In High-burden, Low-income Settings
Funder
National Health and Medical Research Council
Funding Amount
$470,144.00
Summary
I lead newly-funded research grants worth nearly $10 million to conduct novel intervention trials in sexual and reproductive health. These projects build on the extensive collaborations and the robust nationwide network of clinical field sites that I have established in Papua New Guinea during the past five years. My research will lead to improved maternal and neonatal health outcomes, and prevent premature deaths due to cervical cancer, in high-burden, low-income settings worldwide.
Evaluation Of New Screening Strategies For Prevention Of Cancer
Funder
National Health and Medical Research Council
Funding Amount
$251,144.00
Summary
Governments, clinicians and consumers have a need for accurate and up-to-date information about the cost-effectiveness, benefits and harms of cancer screening. This project will evaluate whether further changes to cervical screening will be needed after the release of next generation HPV vaccines, whether new screening programs should be implemented for lung cancer and Lynch syndrome, the potential role of new technologies for bowel screening, and whether prostate testing can be improved.