Quantitiative Assessment Of Solar UV Exposure For Vitamin D Synthesis In Australian Adults
Funder
National Health and Medical Research Council
Funding Amount
$1,162,536.00
Summary
This research program will add significantly to our current scientific understanding of the dual health outcomes of UV exposure (Vitamin D and skin cancer) . This project is in line with Australia's R and D Priorities, in that it will result in direct and indirect social and economic benefits to Australia by applying the scientific knowledge gained through this research to develop public health initiatives to improve some of Australia's most significant and costly health problems.
Susceptibility Of The Basal Layer Of Human Epidermis To UVA Oxidative Damage Due To Pheomelanin And Suboptimal DNA Repair
Funder
National Health and Medical Research Council
Funding Amount
$559,354.00
Summary
Australia has the highest incidence of skin cancer in the world. It is important to understand how sunlight causes skin cancer and the wavelengths involved in order to devise effective preventative and therapeutic strategies. Our proposal is that the cells in the skin that give rise to the most common forms of skin cancer, squamous cell carcinoma and basal cell carcinoma, are particularly vulnerable to UVA. We aim to study why this is the case and whether this vulnerability can be prevented.
Sun Exposure, Vitamin D And The Outcome Of Prostate Cancer.
Funder
National Health and Medical Research Council
Funding Amount
$494,698.00
Summary
We will find out whether hours of sun exposure, reported in a standard interview by men with prostate cancer, reduces prostate cancer recurrence and progression. For any effect of sun exposure ithat we observe, we will find out whether it works through vitamin D, which is produced by sunshine on the skin, or is affected by changes in the vitamin D receptor gene, which produces the protein the binds with vitamin D on cells and makes it work. Prostate cancer is the most common cancer in men in Aus ....We will find out whether hours of sun exposure, reported in a standard interview by men with prostate cancer, reduces prostate cancer recurrence and progression. For any effect of sun exposure ithat we observe, we will find out whether it works through vitamin D, which is produced by sunshine on the skin, or is affected by changes in the vitamin D receptor gene, which produces the protein the binds with vitamin D on cells and makes it work. Prostate cancer is the most common cancer in men in Australia, and this study, using two of the largest collections of clinical outcomes data for this disease, will inform researchers, clinicians and consumers about the possible benefits of sun exposure and Vitamin D in the prevention of recurrence or progression of prostate cancer. On present evidence, these effects are very plausible possibilities. It may also identify sub-groups of men in whom sun exposure or vitamin D might be particularly beneficial in improving outcome of prostate cancer.Read moreRead less
The Melanoma Susceptibility Gene Product P16 Functions In A UV-induced Cell Cycle Checkpoint In Human Skin
Funder
National Health and Medical Research Council
Funding Amount
$204,131.00
Summary
The contribution of the ultraviolet component of sunlight to skin cancer generally, and melanoma in particular, is widely acknowledged. However, the actual mechanism by which ultraviolet radiation changes the normal skin melanocytes, the pigmented skin cells, into cancerous melanomas is unclear. Several years ago, a gene was identified that was found to be mutated in a high proportion of sporadic melanomas, and was also found to be mutated in a proportion of families with a predisposition to dev ....The contribution of the ultraviolet component of sunlight to skin cancer generally, and melanoma in particular, is widely acknowledged. However, the actual mechanism by which ultraviolet radiation changes the normal skin melanocytes, the pigmented skin cells, into cancerous melanomas is unclear. Several years ago, a gene was identified that was found to be mutated in a high proportion of sporadic melanomas, and was also found to be mutated in a proportion of families with a predisposition to developing melanoma. This melanoma susceptibility gene, p16, can act to block cells growth, thus loss of this gene function in disease could lead to uncontrolled cell growth, a hallmark of cancer. This proposal investiagtes the role of p16 in responses of normal skin cells to ultraviolet radiation. We will examine the increased levels of p16 detected in skin after exposure to low doses of ultraviolet radiation and attempt to define the growth responses of these cells to the increased p16 levels. This project will help to establish the normal role of p16 in cellular responses to ultraviolet radiation, and may also identify novel targets for diagnosis, prevention or treatment of melanoma.Read moreRead less
Kidskin: An Intervention To Reduce Sun Exposure In Children
Funder
National Health and Medical Research Council
Funding Amount
$307,775.00
Summary
Melanoma is an important public health problem in Australia. Almost all melanoma is caused by exposure to sunlight, and childhood exposure appears to be particularly important. Thus, if we can reduce childhood exposure, we should ultimately be able to reduce the incidence of melanoma. Despite nation-wide campaigns such as SunSmart, children in Australia still get too much sun exposure. The school offers an ideal opportunity for implementing sun-safety campaigns in children. In 1995, we began the ....Melanoma is an important public health problem in Australia. Almost all melanoma is caused by exposure to sunlight, and childhood exposure appears to be particularly important. Thus, if we can reduce childhood exposure, we should ultimately be able to reduce the incidence of melanoma. Despite nation-wide campaigns such as SunSmart, children in Australia still get too much sun exposure. The school offers an ideal opportunity for implementing sun-safety campaigns in children. In 1995, we began the Kidskin study, which aims to develop, implement and test a school-based program to reduce sun exposure. Preliminary data from the study show that we successfully reduced exposure. However, we are not certain that we have reduced their risk of melanoma. To see if we have reduced the risk of melanoma, we are counting the children's moles. Moles are strongly related to melanoma, and are our best way of measuring actual risk of melanoma. If we are successful, it will be the first time anyone has shown that reducing exposure to sunlight during childhood will lead to a reduction in the incidence of melanoma in later life.Read moreRead less