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Research Topic : pacemaker cells
Australian State/Territory : VIC
Field of Research : Central Nervous System
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Central Nervous System (6)
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  • Researchers (20)
  • Funded Activities (6)
  • Organisations (17)
  • Funded Activity

    Using Stem Cells And Bioengineered Scaffolds To Promote Regeneration Following Necrotic Brain Injury

    Funder
    National Health and Medical Research Council
    Funding Amount
    $710,857.00
    Summary
    A number of injuries, including stroke, result in tissue loss. Consequently promoting repair will require restoration of tissue structure, replacement cells and a supportive environment to promote integration of these new cells. This study will engineer and develop novel scaffolds that can replace tissue whilst additionally providing physical and chemical support for newly implanted stem cells. This work will be conducted in an animal model of stroke.
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    Funded Activity

    Standardising Protocols For The Differentiation And Integration Of Human Pluripotent Stem Cell-derived Neural Transplants In Parkinson's Disease

    Funder
    National Health and Medical Research Council
    Funding Amount
    $987,664.00
    Summary
    Clinical trials have shown that transplanting dopamine neurons (specific nerve cells) into the brain of Parkinson’s disease patients can improve symptoms. Trials use fetal tissue for implantation, which is unsustainable and highly variable. This proposal will examine stem cells as an alternative. We will establish a reliable protocol to instruct human stem cells to become dopamine neurons, develop methods to select these cells and, examine the integration of these transplanted cells in the brain
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    Funded Activity

    Selective Isolation And In Vivo Properties Of Dopamine Neurons Generated From Embryonic Stem Cells.

    Funder
    National Health and Medical Research Council
    Funding Amount
    $505,389.00
    Summary
    This research aims to develop a procedure that allows for the safe and effective use of stem cells as a therapy for Parkinson’s disease. It is based on the concept that new dopamine neurons, generated from stem cells, can be implanted into the brain of the patients in order to replace those lost to the disease, thereby improving motor function.
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    Funded Activity

    Developing A Pathophysiological Model For Attention Deficit Hyperactivity Disorder: A Path To Biomarker Discovery

    Funder
    National Health and Medical Research Council
    Funding Amount
    $314,644.00
    Summary
    Despite the efficacy of stimulant medication in treating attention deficit hyperactivity disorder (ADHD), we lack mechanistic accounts of the neuropathology of ADHD. A major barrier is the lack of human disease models representing clinical symptoms. The derivation of a novel, cell-based ADHD model proposed in this project will shed new light on the physiological bases of ADHD and be a rich resource for biomarker discovery
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    Funded Activity

    Discovery Projects - Grant ID: DP130103131

    Funder
    Australian Research Council
    Funding Amount
    $360,000.00
    Summary
    Generating multi-component scaffolding to influence the differentiation of embryonic stem cells. Nervous system diseases are debilitating and will develop in over 50 per cent of people at some time in their life. This project will develop strategies so that stem cells can be utilised to encourage brain repair for the treatment of Parkinson's disease. The technology developed will also be of benefit for the treatment of other nervous system disorders.
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    Funded Activity

    Special Research Initiatives - Grant ID: SR1101002

    Funder
    Australian Research Council
    Funding Amount
    $21,000,000.00
    Summary
    Stem Cells Australia. Despite progress in stem cell research, scientists do not understand how stem cells “decide” what to become. Stem Cells Australia will draw upon strengths within Australia’s premier stem cell research universities and institutes. This collaboration between leading bioengineering, nanotechnology, stem cell and advanced molecular analysis experts, will fast-track efforts to deliver a fundamental understanding of the mechanisms of stem cell regulation and differentiation, and .... Stem Cells Australia. Despite progress in stem cell research, scientists do not understand how stem cells “decide” what to become. Stem Cells Australia will draw upon strengths within Australia’s premier stem cell research universities and institutes. This collaboration between leading bioengineering, nanotechnology, stem cell and advanced molecular analysis experts, will fast-track efforts to deliver a fundamental understanding of the mechanisms of stem cell regulation and differentiation, and the ability to control and influence this process. Stem Cells Australia will deliver new methods for stem cell propagation and manipulation, new translational technologies for therapeutic applications, and will prepare Australia’s future stem cell scientific leaders.
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    Showing 1-6 of 6 Funded Activites

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