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Characterisation Of Eurl, A Novel Gene Implicated In The Etiology Of Abnormal Brain Development And Intellectual Disability
Funder
National Health and Medical Research Council
Funding Amount
$597,541.00
Summary
Intellectual disability affects around one per cent of Australians, and can arise from genetic abnormalities during fetal life, such as through abnormal regulation of gene expression. We have identified a novel gene, known as eurl, which controls brain assembly as well as the ability of neurons to form functional connections within the brain. We will investigate how this novel gene controls brain development, and characterise eurl as a potential therapeutic target for learning and memory.
Developing New Therapeutic Strategies For Brain Cancer
Funder
National Health and Medical Research Council
Funding Amount
$763,845.00
Summary
Each year, over 1,500 Australians will develop brain cancer. Unlike many cancers, it cannot be prevented by lifestyle changes. Adults with brain cancer usually die within 2 years. The overall aims of this funding are to extend patients' lives and build brain cancer research in Australia so that we have the best chance of curing this disease. The expected outcome is clinical trial of drug candidates for the most common and most deadly brain cancer, high-grade glioma.
The Role Of Rnd Genes During Cortical Neurogenesis And Cell Migration
Funder
National Health and Medical Research Council
Funding Amount
$410,384.00
Summary
In order for the brain to function properly, tens of billions of neurons within it first have to be born, then find their proper location before connecting with other neurons in a highly ordered fashion. Failure of these key processes heavily impacts on subsequent brain function, and have been shown to underlie several disorders including epilepsy. This study will investigate how members of the Rnd gene family control cell production and positioning within the developing brain.
Centre For Research Excellence In Speech And Language Neurobiology (CRE-SLANG)
Funder
National Health and Medical Research Council
Funding Amount
$2,491,340.00
Summary
Half a million Australian children have a speech/language disorder, tripling their changes of poor academic outcomes, limited employment options and social isolation. Current speech therapy is limited, focusing on symptoms and ignoring evidence on underlying aetiologies. By identifying and translating findings on new genes and brain pathways leading to speech and language disorders, we will transform detection, diagnosis, prognosis and genetic counselling of affected children and their families.
Neurobiology Of Childhood Speech Disorders: Improving Detection, Diagnosis And Clinical Care
Funder
National Health and Medical Research Council
Funding Amount
$994,575.00
Summary
One in 20 children have a speech disorder at school entry, with lifelong deficits in psychosocial, academic and employment outcomes. Little is known about the aetiology of speech disorders, preventing targeted care. We combine expertise in speech pathology, gene discovery and brain imaging, to advance knowledge on gene and brain contributions to speech disorder. We will have direct impacts on clinical care including detection, diagnosis and counselling, optimising outcomes for affected children.
Mechanisms Guiding Pathfinding And Positioning Of Cortical Interneurons
Funder
National Health and Medical Research Council
Funding Amount
$621,606.00
Summary
Brain disorders place an economic and social burden on Australia and the personal costs of these illnesses are immeasurable. Several brain abnormalities are caused from the failure of neurons to position themselves in the correct location when the brain develops. Our study aims to discover how neurons move and what factors influence this process. It provides an understanding of normal brain development, as well as providing insight into what may go wrong in the formation of brain diseases.
Translating New Therapeutics And Diagnostics For Major Pregnancy Complications
Funder
National Health and Medical Research Council
Funding Amount
$481,156.00
Summary
My research is focussed on tackling major complications of pregnancy that are a threat to the lives of both mother’s and babies. We are developing new drug treatments for ectopic pregnancy (a dangerous condition where the pregnancy implants in the Fallopian tube), and preeclampsia (a condition where toxins leak out of the placenta into mum's blood, and can seriously injure many of mum's major organs). We are also generating a blood test that may help women avoid the tragedy of a stillbirth.
Development Of Vinorelbine As A Tablet Based Therapy To Cure Ectopic Pregnancies
Funder
National Health and Medical Research Council
Funding Amount
$361,594.00
Summary
Ectopic pregnancies occur if the pregnancy implants in the Fallopian tube. They can be deadly and most are treated surgically. We will examine the exciting possibility that instead of surgery, ectopic pregnancies may be cured with a tablet taken just once. We will perform laboratory studies and a clinical trial, giving vinorelbine to women with ectopic pregnancies.
Prevalence report by the Australian Advisory Board on Autism Spectrum Disorders (ASD) estimated that 1 child in every 160 children in the 6-12 year-old age group is affected by ASD. There is no cure for ASD and the causes are not understood. We propose that sex hormones may play a role in the development of these disorders. We will test this hypothesis using knockout and transgenic mouse models which have social interaction deficits and brain structure reminiscent of these disorders.
Targeting The Anti-angiogenic Factors Of Preeclampsia: Soluble Endoglin And SFlt1
Funder
National Health and Medical Research Council
Funding Amount
$447,024.00
Summary
Preeclampsia is a severe disease of pregnancy - the placenta releases toxins in to mum's bloodstream that circulate her body and damage her organs. As there are no efficacious treatments, clinicians are forced to deliver babies irrespective of gestation. Although the two toxins of preeclampsia have been identified, little is known about their regulation. This project aims to elucidate the regulation of these toxins and design therapeutics that can prevent their release in the clinic.