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Research Topic : Cancer Treatment
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  • Funded Activity

    Equitable Access To Stuttering Treatments: Developing Distance And Self Managed Treatment Models

    Funder
    National Health and Medical Research Council
    Funding Amount
    $4,321,062.00
    Summary
    The development of normal verbal communication is of the utmost importance to human health. Stuttering is a prevalent disorder that severely interferes with communication. It can be disfiguring and typically causes speech related social anxiety. Social phobia is present in around half of adults affected. It prevents attainment of occupational potential and children who stutter are typically teased and bullied at school. For the past decade NHMRC Project funding has enabled the present team to co .... The development of normal verbal communication is of the utmost importance to human health. Stuttering is a prevalent disorder that severely interferes with communication. It can be disfiguring and typically causes speech related social anxiety. Social phobia is present in around half of adults affected. It prevents attainment of occupational potential and children who stutter are typically teased and bullied at school. For the past decade NHMRC Project funding has enabled the present team to conduct world class basic research and clinical trials in stuttering. Significant gains have resulted from that research, in particular the development of treatments across the age groups that have a significant evidence base. However, it is becoming increasingly clear that there are serious barriers to the implementation of these evidence based treatments, and innovative treatment developments are needed to address this. In particular, speech pathology services for rural and remotely located patients and their families are incompletely funded, and even in urban settings workplace restrictions have resulted in speech pathologists delivering incomplete and piecemeal treatments. The program of research will develop the following innovative treatment models to solve this problem: �Distance intervention models for the delivery of speech pathology services to rural patients and their families and others who are isolated from treatment services. �Self-managed treatment models for children and adults who stutter, including procedures to minimise the ubiquitous problem of relapse in adults. It is widely understood that social anxiety is a significant problem for many stutterers and research is urgently needed to establish the extent of social anxiety in stutterers across the age groups and its negative effects on treatment effectiveness. Thus, a further aim of this program of research is to: �Identify those patients for whom social anxiety is likely to constitute a barrier to successful treatment. �Develop supplementary interventions to meet the needs of those socially anxious patients. The cause of stuttering is unknown. Understanding the mechanisms underpinning effective behavioural treatments would contribute to understanding causal factors in stuttering. Thus, this program of research also aims to: �Establish why behavioural treatments work, thereby generating new knowledge about causal factors.
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    Funded Activity

    Molecular Markers Of Phenotype, Therapeutic Responsiveness And Prognosis In Human Cancers.

    Funder
    National Health and Medical Research Council
    Funding Amount
    $11,762,117.00
    Summary
    This proposal aims to identify molecular markers that can be used to classify subtypes of particular cancers according to their prognosis and response to therapy. This will optimise selection of patients for the most appropriate treatment and lead to the development of new therapeutic strategies.
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    Funded Activity

    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.
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    Funded Activity

    Gynaecological, Oesophageal And Skin Cancer In Australia: Developing The Evidence-base

    Funder
    National Health and Medical Research Council
    Funding Amount
    $6,079,935.00
    Summary
    Our Program addresses cancers of the ovary, uterus, oesophagus and skin (both melanoma and non-melanoma skin cancers). The first three cancers together affect almost 4,000 people and cause more than 2,000 deaths every year while skin cancer affects almost 400,000 Australians each year. Our aims are, first, to understand better how these cancers are caused so that we can try to prevent them in the future; second, to enhance diagnosis of these cancers; and third, to improve the survival and qualit .... Our Program addresses cancers of the ovary, uterus, oesophagus and skin (both melanoma and non-melanoma skin cancers). The first three cancers together affect almost 4,000 people and cause more than 2,000 deaths every year while skin cancer affects almost 400,000 Australians each year. Our aims are, first, to understand better how these cancers are caused so that we can try to prevent them in the future; second, to enhance diagnosis of these cancers; and third, to improve the survival and quality of life for people who are diagnosed with these cancers in Australia.
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    Funded Activity

    New Evidence To Guide Decisions About The Prevention And Treatment Of Common Cardiovascular Diseases.

    Funder
    National Health and Medical Research Council
    Funding Amount
    $7,309,675.00
    Summary
    The Program brings together clinicians, epidemiologists and statisticians in a unique endeavour designed to improve the prevention and treatment of heart attack and stroke. For the foreseeable future, these conditions will remain leading causes of death and disease in Australia and most other countries in the region. While there are many established treatment and prevention strategies for these conditions there remains great potential for further advances to be made, which might avert very large .... The Program brings together clinicians, epidemiologists and statisticians in a unique endeavour designed to improve the prevention and treatment of heart attack and stroke. For the foreseeable future, these conditions will remain leading causes of death and disease in Australia and most other countries in the region. While there are many established treatment and prevention strategies for these conditions there remains great potential for further advances to be made, which might avert very large numbers of premature deaths and serious disabling outcomes. This Program of research seeks to provide new information that will give patients, doctors and policy makers innovative options for the treatment and prevention of heart attack and stroke. The Program will incorporate two main elements: observational studies and randomised controlled trials. The observational studies will establish the precise importance of each of the main causes of cardiovascular diseases (such as diabetes, blood pressure, smoking and cholesterol) at different ages, in different ethnic groups and in different geographic regions. Furthermore, these studies will also define the relative importance of established and novel risk factors for cardiovascular disease, providing important new information about how resources for prevention should be directed. The large-scale trials will provide evidence about the effectiveness and safety of a range of new cardiovascular disease prevention and treatment strategies. The work will build on the team�s very successful approach of evaluating the effects of established interventions in high-risk groups for whom those particular treatments are not currently indicated.The Program will also include studies that address the critical issue of translating health research findings into practice _ in terms of health policy, clinical practice and consumer behaviour. A particular focus involves the application and evaluation of novel Internet technologies for promoting best practice. The methodologies used by the team will ensure that the evidence generated by the Program is as precise and reliable as possible, in order to provide a sound base to guide decisions about changes in health care policy and practice. The research findings will have direct relevance to the healthcare needs of millions of Australians within the next five years, and the impact of the work will be assured by the development of implementation and dissemination plans for each major component of the Program.
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    Funded Activity

    Towards Cancer Control: Population And Molecular Strategies

    Funder
    National Health and Medical Research Council
    Funding Amount
    $5,468,491.00
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    Funded Activity

    Colorectal Cancer - Molecular Basis To Targeted Therapeutics.

    Funder
    National Health and Medical Research Council
    Funding Amount
    $19,818,386.00
    Summary
    Cancer of the colon and rectum is the most common form of cancer in Australia. Over 12,000 people are diagnosed each year with colorectal cancer (CRC) and more than one third of people will die of their disease. CRC is caused by mistakes in production of colon cells. Our research aims to discover new ways to detect CRC, develop smart drugs and nanoparticle delivery systems for destroying all types of CRC cells. We will then test our new anti-cancer drugs in clinical trials with CRC patients.
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    Funded Activity

    Roles Of Impaired Apoptosis And Differentiation In Tumourigenesis And Therapy

    Funder
    National Health and Medical Research Council
    Funding Amount
    $21,656,910.00
    Summary
    The ten scientific laboratories in this program have joined forces to investigate two ways in which tumours develop. Both are of particular interest, because they suggest new ways in which cancer might be overcome. Most of our tissues are continually renewed throughout life by production of new cells. Therefore many of the old cells in each tissue must die off to maintain the proper cell numbers. To eliminate cells that are no longer needed or have become damaged, the body has developed a remark .... The ten scientific laboratories in this program have joined forces to investigate two ways in which tumours develop. Both are of particular interest, because they suggest new ways in which cancer might be overcome. Most of our tissues are continually renewed throughout life by production of new cells. Therefore many of the old cells in each tissue must die off to maintain the proper cell numbers. To eliminate cells that are no longer needed or have become damaged, the body has developed a remarkable cell suicide process termed apoptosis. Unfortunately, however, occasionally a random accident to the genes in one of our cells prevents the machinery for apoptosis from being turned on. In that case, the cell will not die when it should and, by continually dividing, it may eventually give rise to a cancer. Since most cancer cells still retain most of the machinery for apoptosis, however, a drug that could switch on this natural cell death machinery would provide a promising new approach to cancer therapy. Identifying and developing such drugs is one major long-term goal of this program. The other focus of our program concerns stem cells. These are rare cells with the remarkable ability to generate an entire tissue. For example, one of our laboratories has identified stem cells that can generate all the cells in the breast. The almost unlimited regenerative capacity of stem cells has a built-in danger. If a stem cell acquires the ability to proliferate excessively, it can go on to form a tumour. Indeed, many cancer researchers now suspect that rare stem cells within a tumour cause its inexorable growth. If tumour growth is maintained by stem cells, it will be essential to develop new forms of therapy that target these rare cancer stem cells rather than merely the bulk of the tumour cells. This is another key long-term goal of our program.
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    Funded Activity

    Immune Regulation, Effector Function And Human Therapy

    Funder
    National Health and Medical Research Council
    Funding Amount
    $11,474,346.00
    Summary
    The immune system plays an important role in protecting the host from viral and bacterial infections, and inhibits cancer onset and progression. Immune processes proceed through specialised cells in conjunction with soluble factors such as inteferons and interleukins. These soluble factors can regulate the activities of immune cells, and inhibit the growth and survival of aberrant (virus infected, cancer) cells. Unfortunately, the immune system can sometimes lose specificity and attack the host, .... The immune system plays an important role in protecting the host from viral and bacterial infections, and inhibits cancer onset and progression. Immune processes proceed through specialised cells in conjunction with soluble factors such as inteferons and interleukins. These soluble factors can regulate the activities of immune cells, and inhibit the growth and survival of aberrant (virus infected, cancer) cells. Unfortunately, the immune system can sometimes lose specificity and attack the host, resulting in autoimmune diseases such as diabetes. This research team has played a vital role in characterising the specific activities of immune cells and the associated factors. Importantly, they are deciphering the intricate communication networks of these immune components and dissecting their modes of action. By understanding these complex processes, the team aims to harness the unique therapeutic properties of our own immune system and translate their findings into the clinic. The team is developing new immune-based therapies for use, either alone or in combination with existing chemotherapies to fight debilitating human diseases such as cancer and autoimmune disease.
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    Funded Activity

    Genetic Anaylsis Of Complex Disease Processes

    Funder
    National Health and Medical Research Council
    Funding Amount
    $4,134,917.00
    Summary
    The genome project has opened the path for the study of diseases using genetics. This approach is still quite recent in human and mammalian biology. It requires a large amount of input from statisticians and computer scientists as well as from the biologists and clinicians working on the disease. The team is looking for genes causing complex genetic diseases and use human populations and families as well as mouse models of human diseases. This includes modifiers of cancer development and respons .... The genome project has opened the path for the study of diseases using genetics. This approach is still quite recent in human and mammalian biology. It requires a large amount of input from statisticians and computer scientists as well as from the biologists and clinicians working on the disease. The team is looking for genes causing complex genetic diseases and use human populations and families as well as mouse models of human diseases. This includes modifiers of cancer development and response to infectious disease as well as deafness and autoimmune diseases.
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