Heart attacks and stroke, underpinned by atherosclerosis, are the number one cause of deaths in our community. While statin reduces cholesterol, there is no treatment to reduce the inflammation initiated by cholesterol entry into blood vessel walls. Our studies are directed towards precise identification of subsets of an inflammatory cell (B lymphocyte) that promote or attenuate atherosclerosis.Therapeutic targeting of these subsets has potential to reduce the inflammation in atherosclerosis
The Significance Of Glial Dysfunction In Retinopathy Of Prematurity
Funder
National Health and Medical Research Council
Funding Amount
$311,567.00
Summary
Abnormalities in cells at the back of the eye called photoreceptors are associated with at least 50% of all cases of blindness in this country.This project will determine whether substances released from dying photoreceptors cause the death of neighbouring cells. In addition we will examine whether treatments that block the actions of these released substances can prevent the death of photoreceptors, thereby providing a novel therapeutic agent for the treatment of devastating eye diseases.
Role For Sphingosine Kinase-1 In Endothelial Progenitor Cell Survival And Differentiation.
Funder
National Health and Medical Research Council
Funding Amount
$294,205.00
Summary
Lay description: Collectively, diseases of the vascular system contribute immensely to the burden of health care in Australia. Notably, abnormal blood vessel formation and function (angiogenesis) has been identified as a major cause or contributor to the vascular complications associated with inflammation, cancer, rheumatoid arthritis and diabetes. Endothelial cells are one of the principle cells of blood vessels forming a barrier between the blood and tissues. This project aims to understand th ....Lay description: Collectively, diseases of the vascular system contribute immensely to the burden of health care in Australia. Notably, abnormal blood vessel formation and function (angiogenesis) has been identified as a major cause or contributor to the vascular complications associated with inflammation, cancer, rheumatoid arthritis and diabetes. Endothelial cells are one of the principle cells of blood vessels forming a barrier between the blood and tissues. This project aims to understand the process whereby mature endothelial cells are formed and how replacement of damaged endothelial cells is normally achieved. Stem cell therapy is considered the new frontier for the treatment of many diseases. Understanding how endothelial progenitor cells differentiate to mature endothelial cells and the signals which operate inside the cell may allow therapeutic manipulation of key target moecules in order to limit or control inflammation, tumourigenesis, rheumatoid arthritis and diabetic retinopathy. Our results suggest that one target maybe the enzyme sphingosine kinase.Read moreRead less
Defining The Molecular Events That Initiate The Genesis Of Lymphatic Vessels.
Funder
National Health and Medical Research Council
Funding Amount
$555,325.00
Summary
Lymphatic vessels are a vital component of the cardiovascular system. Abnormalities in the growth and development of lymphatic vessels are associated with human disorders including lymphoedema, cancer and inflammatory diseases. The focus of this application is to determine the molecular events that initiate the construction of lymphatic vessels, with the aim of identifying targets to which novel therapeutics for the treatment of lymphatic vascular diseases could be generated.
Regulation Of Bone Marrow Progenitor Cells For Diabetic Retinopathy
Funder
National Health and Medical Research Council
Funding Amount
$442,930.00
Summary
Diabetic retinopathy (DR) is the leading cause of blindness in the working population of developed countries. Current treatments cannot restore the retinal vascular damage in DR. This project intends to combat DR by repairing the damaged retinal vasculature through short- and long-term regulations of the function of bone marrow derived endothelial progenitor cells. Success in this project would potentially have a major impact on all diabetic vascular complications.
The Relationship Between Vascular Remodelling And Mast Cells In Chronic Asthma
Funder
National Health and Medical Research Council
Funding Amount
$353,253.00
Summary
It is known that the airwalls of asthmatics have increased numbers of small blood vessels which can contribute to poor lung function in asthma. The proposed research uses a novel sheep model for chronic asthma to investigate the progressive changes to the blood vessels in the airway walls of asthmatic lungs. The information gained from our sheep model will assist the understanding of blood vessel growth and thus ulitmately help in devising new strategies to treat the effects of asthma.
Transcriptional Control Of Blood Vessel Development By Sox18
Funder
National Health and Medical Research Council
Funding Amount
$468,564.00
Summary
Blood vessels play an essential role in maintaining the supply of nutrients to every organ and tissue in the body. Improper development of blood vessels in the embryo can compromise survival of the embryo, and defects in the ability of blood vessels to grow, regenerate and adapt to change during adult life can be life-threatening. The growth of new blood vessels (angiogenesis) is also an important factor in the ability of solid tumours to grow during the progression of cancer. It is therefore of ....Blood vessels play an essential role in maintaining the supply of nutrients to every organ and tissue in the body. Improper development of blood vessels in the embryo can compromise survival of the embryo, and defects in the ability of blood vessels to grow, regenerate and adapt to change during adult life can be life-threatening. The growth of new blood vessels (angiogenesis) is also an important factor in the ability of solid tumours to grow during the progression of cancer. It is therefore of fundamental importance in the health sciences to gain an understanding of how blood vessels form and regenerate. As a result of our collaborative research efforts, we have discovered a gene, Sox18, that appears to regulate blood vessel development by controlling the formation and-or behaviour of endothelial cells, which line the blood vessels and make them impermeable. Our research so far indicates that MICE WITH DEFECTS IN SOX18 DIE FROM VASCULAR DEFECTS, underlining the importance of this gene. THIS PROJECT IS CONCERNED WITH FINDING OUT HOW SOX18 WORKS - exactly what goes wrong in mice lacking this gene, whether Sox18 can influence endothelial cell behaviour in cell culture, how Sox18 comes to be active in endothelial cells, what genes are switched on by Sox18, and what genes Sox18 co-operates with in its role in endothelial cells. The answers to these questions will not only provide fundamental basic information about how blood vessels development is controlled, but also sow the seeds for possible future therapies in which blood vessel development could be stimulated (eg in wound healing) or suppressed (eg in tumour progression) through pharmaceutical intervention.Read moreRead less
Molecular Mechanisms Of Lymphangiogenesis In Development And Disease.
Funder
National Health and Medical Research Council
Funding Amount
$303,828.00
Summary
Lymphatic vessels are a vital component of the cardiovascular system and serve several functions critical to embryonic development and adult health. These include: 1. The uptake, transport and return to the bloodstream of tissue fluid and protein. 2. The uptake and transport of lipids from the digestive tract. 3. The transport of cells of the immune system that fight infection. Abnormalities in the development and function of lymphatic vessels are associated with a large number of human diseases ....Lymphatic vessels are a vital component of the cardiovascular system and serve several functions critical to embryonic development and adult health. These include: 1. The uptake, transport and return to the bloodstream of tissue fluid and protein. 2. The uptake and transport of lipids from the digestive tract. 3. The transport of cells of the immune system that fight infection. Abnormalities in the development and function of lymphatic vessels are associated with a large number of human diseases. These include primary and secondary lymphoedema, inflammatory diseases such as psoriasis, rheumatoid arthritis and and asthma, and malignancies of the lymphatic vessels such as lymphangiosarcoma and Kaposi's sarcoma. Lymphatic vessels are also critical for the progression of many forms of cancer, by virtue of the fact that tumour cells exploit lymphatic vessels as a transport route for metastases. Diseases in which lymphatic vessels are involved therefore impact on a significant proportion of the Australian population. Our current knowledge of the mechanisms by which the lymphatic vascular network is constructed during embryonic development, and deregulated in disease states, is extremely limited. Once the molecular mechanisms of disease origin are established, much needed novel therapeutics to treat patients suffering from lymphatic vascular diseases can be designed. Treatments targeted to prevent the aberrant growth of lymphatic vessels are vital to halt tumour metastasis and the progress of inflammatory diseases, while treatments targeted to stimulate the development of new lymphatic vessels are necessary to treat diseases in which lymphatic vessels are hypoplastic, such as lymphoedema. This project aims to advance our understanding of lymphatic vascular development and function, in order to provide the opportunity to benefit patients suffering from all spectrums of lymphatic vascular disease.Read moreRead less
Early Events In Arteriolar Remodeling: Adaptation To Prolonged Vasoconstriction
Funder
National Health and Medical Research Council
Funding Amount
$415,750.00
Summary
Small arteries, while acutely responding to their environment with changes in diameter to regulate local blood flow and pressure, also undergo structural adaptation or remodelling. These events occur over a range of time-frames and involve both non-genetically and genetically regulated events. Thus a contractile event, while initially decreasing vessel diameter, also activates longer time frame processes which can span from rearrangment of cellular junctions-contacts to overt structural changes ....Small arteries, while acutely responding to their environment with changes in diameter to regulate local blood flow and pressure, also undergo structural adaptation or remodelling. These events occur over a range of time-frames and involve both non-genetically and genetically regulated events. Thus a contractile event, while initially decreasing vessel diameter, also activates longer time frame processes which can span from rearrangment of cellular junctions-contacts to overt structural changes within the vessel wall (for example thickening of the muscle layer). These adaptive processes may enable the forces of contraction to be maintained without continued energy expenditure and damage to the vessel per se. However, they can also contribute to long-term alterations in the control of blood pressure and perhaps contribute to states of hypertension as well as other common vascular diseases. For these studies we will use arterioles, isolated by microsurgical techniques, together with sophisticated computer and video-based approaches. These techniques allow arterioles to be studied under controlled conditions and relevant biochemical measurements performed. We will also use a cell model where cultured cells will be studied after defined periods of mechanical stimulation (for example stretch). Cells will be probed using a novel microscopic technique (atomic force microscopy) which enables the cell membrane to be studied with respect to changes in composition as well as physical characteristics (for example stiffness). The studies are relevant to our understanding of the normal adaptive processes occurring within blood vessels to control blood flow and pressure. The studies are also of direct relevance to our understanding of common vascular disease states including hypertension, complications of diabetes and chronic inflammatory disorders.Read moreRead less