Development Of A Take-home Rehabilitation Device That Improves Visual Stability And Balance In Patients With Peripheral Vestibular Injury
Funder
National Health and Medical Research Council
Funding Amount
$789,377.00
Summary
The balance system senses head motion via the balance organs, one in each inner ear, and stabilises vision during head movements. Without it, every time you walk, run, or drive on a bumpy road, the world appears to bounce. We have developed a device shown to reliably 'train up' the balance system. Our aim is to develop this device further for effective take-home rehabilitation.
Peptide Therapeutics For The Treatment Of Autoimmune Diseases: Stability, Delivery And Disposition
Funder
National Health and Medical Research Council
Funding Amount
$368,467.00
Summary
Autoimmune diseases affect around 120 million people worldwide. This project will progress the development of a peptide that suppresses disease-causing autoantigen-specific immune responses without affecting protective responses. Different routes of delivery for this peptide will be evaluated, as well as slow-release formulations that will extend its in vivo lifetime. The outcome will be a patient-friendly form of this therapeutic lead that can be taken forward to preclinical evaluation.
A vitamin-sized capsule, containing gas sensors, is to be fully developed for assessing the state of health and diagnosing the diseases relevant to gastrointestinal tract. The capsule travels along the tract, transmitting information about the gas species generated by the microorganisms of the gut, which is closely associated with the health of the human under surveillance. The information will be invaluable for diagnostics and adjusting the diet to mitigate and cure the diseases of the guts.
Enhanced Deep Brain Stimulation Electrodes For Improved Efficacy In Parkinson’s Disease Therapy
Funder
National Health and Medical Research Council
Funding Amount
$809,940.00
Summary
We are developing an advanced Deep Brain Stimulation system to improve the treatment for Parkinson’s disease. Current devices benefit only half of the patients, due to imprecision in directing the electrical current to the ideal brain targets. Our system aims to deliver the current more selectively. Our implant will contain more and smaller electrodes. We will also use a state-of-the-art stimulator, implantable on the head, with capabilities far beyond the current technology.
Evaluation Of The Safety Of Lead Compounds For Allergic Asthma
Funder
National Health and Medical Research Council
Funding Amount
$310,568.00
Summary
Asthma is one of the most common chronic respiratory diseases in developed countries and is typically treated with corticosteroids which provide symptomatic relief and coarse non-specific treatment of the underlying disease. We are pursuing innovative therapies by targeting a different enzyme, HPGD2S, involved in the inflammatory mechanisms of asthma. We have developed potent, anti-inflammatory drug candidates and aim to profile the safety of these compounds before entering clinical studies.
Fighting Blindness With A Minimally Invasive Retinal Stimulator
Funder
National Health and Medical Research Council
Funding Amount
$998,194.00
Summary
Retinal degenerative conditions are the leading cause of blindness in developed nations, with over 200 million people afflicted worldwide. Our group has pioneered a minimally-invasive therapeutic stimulator that can arrest retinal degeneration without blocking vision. We are now ready to perform the prerequisite translational studies to develop and test a human-grade device. The ultimate goal is to be the first to develop a commercial therapeutic stimulator that protects against vision loss.
Development Of A Novel Endovascular Therapy For Occlusive Peripheral Vascular Disease
Funder
National Health and Medical Research Council
Funding Amount
$624,197.00
Summary
We aim to develop and assess a new medical device for the treatment of diseased arteries. The new device uses an angioplasty balloon coated with a new drug to open narrowed arteries and will enable the arteries to remain open for longer periods and with less likelihood of unwanted side effects from the procedure.
Huntington’s disease is a devastating neurological disorder, with no drugs currently available to cure or treat the underlying cause. Our recent laboratory work on a drug called PBT2 was the foundation of a encouraging clinical trail for this disease. Here, we propose to investigate a drug called Zn(DTSM) for this disease, which has similar properties to PBT2, but we expect will have a greater effect.
Plasma Lipid Profiling For Risk Assessment Of Unstable Coronary Artery Disease
Funder
National Health and Medical Research Council
Funding Amount
$512,316.00
Summary
Age, sex, smoking, blood pressure and cholesterol level are risk factors for the development of heart disease. Most adults belong to an intermediate-risk group in which the predictive power of current risk factors is low. Most heart attacks occur in this group. Consequently, many individuals at risk are not properly identified nor treated appropriately. We are developing a new test to accurately assess risk of a future heart attack that will address this deficiency in our health system.
Development Of Endovascular Stents With Proactive Biocompatibility
Funder
National Health and Medical Research Council
Funding Amount
$428,470.00
Summary
Metallic cardiovascular implants, such as stents, used in the treatment of heart disease are not compatible with blood. They cause inflammation at the site of implantation and increase the risk of blood clots forming. We have developed a unique method of binding bioactive protein layers to the surface of metal alloys, and shown a significant improvement in their compatibility. Stents coated using our technology stand to dramatically improve the treatment of cardiovascular disease.