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MIGRATORY CHARACTERISTICS OF SKIN-DERIVED NEURAL PRECURSORS AS A NOVEL REGENERATIVE THERAPY FOR ALZHEIMER’S DISEASE
Funder
National Health and Medical Research Council
Funding Amount
$46,945.00
Summary
Memory decline in Alzheimer's disease is linked to a massive loss of neurons and the connections between these cells. Stem cell therapy has the potential to combat this neuronal loss by replenishing the brain with healthy functional neurons. This study aims to develop a new type of neural stem-like cell, termed skin-derived neural precursors, which can be isolated from a patient’s own skin. The outcomes from this work will provide the necessary data for progress into human clinical trial.
Correction Of Friedreich Ataxia Induced Pluripotent Stem Cells By Non-viral Gene Therapy
Funder
National Health and Medical Research Council
Funding Amount
$63,270.00
Summary
Friedreich ataxia (FRDA) is an inherited progressive disorder of the nervous system and heart. Stem cell therapy has the potential to repair or replace damaged tissues and restore organ function in FRDA patients. The defect inherent in stem cells obtained from FRDA patients will be corrected by a gene therapy approach that will restore normal FRDA gene expression and addresses major safety concerns for the clinical use of corrected stem cells in transplantation medicine.
Examining The Specific Vulnerability Of Dopaminergic Cells To Bioenergetic Defects Using Patient-derived Induced Pluripotent Stem Cells As A Model Of Parkinson’s Disease
Funder
National Health and Medical Research Council
Funding Amount
$112,366.00
Summary
The project will develop new cell models of Parkinson's disease utilising the recently discovered technique of inducing pluripotent stem cells from adult skin cells and differentiating them into the type of neurons that are affected in Parkinson's disease. The novel method will allow further insights to be gained into the molecular pathways involved in the disease and facilitate a search for means to rescue these cells from neurodegenerative processes.
Investigating Friedreich Ataxia Cardiomyopathy And Ophthalmopathy Using Induced Pluripotent Stem Cells
Funder
National Health and Medical Research Council
Funding Amount
$136,205.00
Summary
There is no effective treatment for Friedreich ataxia (FRDA). Patients, usually diagnosed as children, will end up in wheelchairs; many have difficulty with movement, speech, develop eye problems and diabetes. Most die at a young age from heart failure. In this project we will study stem cells from patients with FRDA. In the laboratory, these stem cells will be turned into heart and eye cells to study why patients with FRDA develop symptoms and to help develop new drugs to provide effective trea ....There is no effective treatment for Friedreich ataxia (FRDA). Patients, usually diagnosed as children, will end up in wheelchairs; many have difficulty with movement, speech, develop eye problems and diabetes. Most die at a young age from heart failure. In this project we will study stem cells from patients with FRDA. In the laboratory, these stem cells will be turned into heart and eye cells to study why patients with FRDA develop symptoms and to help develop new drugs to provide effective treatment.Read moreRead less
The Menstrual Cycle, Menopause And Gender Specific Health Needs Of Women With Complex Medical And Psychiatric Conditions.
Funder
National Health and Medical Research Council
Funding Amount
$149,982.00
Summary
The great advances in medical science mean that women are living longer, sometimes with very complex conditions.The aim of this study is to determine how common women’s health issues are in women who have had a lung or bone marrow transplant and in women with severe mental illness. The study will involve face to face interview with women and then a survey of a larger number of women. The study will help improve the care and quality of life of women who already face significant health challenges.
Application Of Adult Stem Cells To Bioengineered Corneal Epithelium And Endothelium Autografts
Funder
National Health and Medical Research Council
Funding Amount
$92,314.00
Summary
Damage to the cornea causes vision loss. Transplants can restore sight but carry risk of rejection and therefore require anti-rejection therapy, which has side effects. Bioengineered corneal components could replace transplants. Our goals are: 1) Growth of corneal endothelium and epithelium from adult stem cells to reduce the amount of tissue so the patient's own cells could be used. 2) Develop scaffolds that are suitable for implantation or other methods to deliver cells.
Optimising Human Vascularisation And Liver Tissue Engineering Models To Develop Functional Bio-artificial Human Liver Tissue
Funder
National Health and Medical Research Council
Funding Amount
$124,761.00
Summary
This project aims to grow human blood vessels and liver cells derived from human stem cells within a supporting scaffold to generate a “liver in a dish”. Transplantation involves connecting blood vessels in this structure to those of the recipient. This should restore function in mice with human-like liver disease, thereby demonstrating potential of this technology to be developed as an alternative to liver transplantation.
Improving 3D Scaffolds For Skin Tissue Engineering Using Advanced Biotechnology
Funder
National Health and Medical Research Council
Funding Amount
$68,971.00
Summary
Burns injuries are among the most physically and psychologically debilitating injuries. Patients who suffer from severe, extensive burn injuries can have a shortage of healthy, undamaged donor sites and so skin substitutes are used as alternatives to provide wound healing. However, the newly produced skin does not appear or function normally. The aim of this project is to develop a skin equivalent which will provide rapid regeneration of normal skin and improve a patient’s quality of life.
Modelling Age-related Macular Degeneration Using Patient Specific Induced Pluripotent Stem Cells
Funder
National Health and Medical Research Council
Funding Amount
$86,117.00
Summary
It is now possible to induce patient own skin cells to become stem cells. These cells can then be guided to become any cell of the body. This technique allows the study of disease cells without the need of obtaining biopsies from diseased tissue, such as the retina. This project aims to study age-related macular degeneration using patients’ stem cells, which will be differentiated into cells affected in AMD. The role of specific genetic risks in the biology of these cells will be investigated.