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The Australasian Leukaemia And Lymphoma Group (ALLG) Trial Centre
Funder
National Health and Medical Research Council
Funding Amount
$790,000.00
Summary
Lymphoma, leukaemia and related cancers of the blood affect thousands of Australians, including children. The Australasian Leukaemia and Lymphoma Group, a network of clinical and laboratory haematologists, will integrate laboratory research to discover new approaches to treatment, with clinical trials to test the safety and effectiveness of the new treatments. This approach should accelerate the research and maximise patient and community benefits.
Allogeneic stem cell transplantation (SCT) remains the most effect curative treatment for patients with a number of malignant conditions, especially leukemia. The ability to cure leukemia by this procedure relates to a process known as Graft-versus-Leukaemia effects (GVL) which ocurrs when the newly transplanted stem cells (which includes the immune system) recognises the leukemia as foreign and mounts an immune attack against it. These studies will focus on the effect of a cellular pathway invi ....Allogeneic stem cell transplantation (SCT) remains the most effect curative treatment for patients with a number of malignant conditions, especially leukemia. The ability to cure leukemia by this procedure relates to a process known as Graft-versus-Leukaemia effects (GVL) which ocurrs when the newly transplanted stem cells (which includes the immune system) recognises the leukemia as foreign and mounts an immune attack against it. These studies will focus on the effect of a cellular pathway invilving NKT cells that preliminary data suggests is critical to the development of GVL. Methods to augment this activation pathway will be studied in preclinical models that may then be studied in clinical trials with the aim of improving the outcome of patients transplanted for leukemias.Read moreRead less
DETECTION OF OCCULT DISSEMINATED TUMOUR CELLS AND TUMOUR DNA IN EARLY STAGE OPERABLE BREAST CANCER PATIENTS
Funder
National Health and Medical Research Council
Funding Amount
$561,000.00
Summary
Most of the reduction in breast cancer death rate in recent years is due to earlier diagnosis because of mammographic screening. Even among women with very favorable tumours, at least 20% will die of breast cancer. The risk increases to over 50% in less favorable cases of operable early breast cancer. Current practice relies very heavily upon prognostic factors such as lymph node status and tumour size in determining the risk of subsequent failure and the need for therapy. There is a significant ....Most of the reduction in breast cancer death rate in recent years is due to earlier diagnosis because of mammographic screening. Even among women with very favorable tumours, at least 20% will die of breast cancer. The risk increases to over 50% in less favorable cases of operable early breast cancer. Current practice relies very heavily upon prognostic factors such as lymph node status and tumour size in determining the risk of subsequent failure and the need for therapy. There is a significant risk of under treating good prognosis disease patients (20%) and over treating women with intermediate and high risk disease (40%). The first aim of the study is to use novel molecular methodologies to detect breast cancer cells in the blood of patients with early stage breast cancer at diagnosis. The presence of tumour cells will be correlated with the usual prognostic factors used in the management of women with breast cancer. The patients will be followed long-term to clarify the relationship between disseminated tumour cells in the blood and bone marrow and eventual outcome to assess the effectiveness of these new methodologies in patient management. We will also assess new molecular methodologies which will allow us to track very low levels of disease, and thereby monitor the effectiveness of treatment, and allow prediction of impending relapse. Studying the blood of breast cancer patients represents a unique opportunity for determining whether the cancer has spread before surgery and for monitoring of disease after surgical removal of the tumour. This study may prove invaluable in predicting disease free and survival outcomes and provide a more rational approach to the use of chemotherapy in patients with early breast cancer.Read moreRead less
BMP4 - A Metastasis Suppressor Gene In Breast Cancer
Funder
National Health and Medical Research Council
Funding Amount
$454,220.00
Summary
Breast cancer is the most common cause of cancer death in western women. Whilst the primary tumour can often be eradicated successfully, in many cases, it may have already spread to other organs, including lungs, liver and bone, causing severe morbidity. Current treatments are largely palliative and new therapies that specifically prevent to spread of breast cancer are urgently required. However, little is known about the molecular pathways regulating the spread of cancer cells. We have shown th ....Breast cancer is the most common cause of cancer death in western women. Whilst the primary tumour can often be eradicated successfully, in many cases, it may have already spread to other organs, including lungs, liver and bone, causing severe morbidity. Current treatments are largely palliative and new therapies that specifically prevent to spread of breast cancer are urgently required. However, little is known about the molecular pathways regulating the spread of cancer cells. We have shown that expression of a gene called BMP4 in tumours blocks the spread of breast cancer in a mouse model. The aim of this project is to develop the application of BMP4 as a therapy for advanced breast cancer using our mouse model. We will measure the expression of BMP4 in human breast cancer and test whether treatment with purified BMP4 protein can protect mice from the spread of breast cancer. If successful, this study will offer a new therapy for women with currently incurable breast cancer.Read moreRead less