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Funded Studies

The Foundation supports research across basic, translational and clinical science to speed breakthroughs that can lead to the creation of new treatments and a better quality of life for people with Parkinson's disease.

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Previously funded studies appear chronologically, with the most recent appearing first.

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  • Therapeutics Development Initiative, 2012
    IMD-026259 - An Innovative Drug for Disease-Modifying Treatment of Parkinson´s Disease

    Objective/Rationale:
    IMD-026259 represents a proprietary highly potent and selective small molecule inhibitor of NF-kB pathway and 1 alpha (HIF-1alpha) mediated transcriptional activity. Comprehensive...

  • MJFF Research Grant, 2012
    Gremlin-1, a Putative VTA-derived Neuroprotective Factor in Parkinson's Disease (Supplement)

    Promising Outcomes of Original Grant:
    We have previously postulated that the glycoprotein Gremlin has a neuroprotective role in PD. To test this hypothesis, we sought to develop a gremlin knockout pre...

  • Target Validation, 2012
    Validation of Sirtuin 3 as a Neuroprotective Target in Parkinson’s Disease

    Objective/Rationale:
    Mitochondria are the major energy generators of a cell. Dysfunctional mitochondria are central to the pathology of Parkinson’s Disease (PD).  We hypothesize that improving the...

  • Biomarker Development, 2012
    Cleaved Cerebrospinal Fluid Proteins as Early Biomarkers for Detection of Parkinson’s Disease.

    Objective/Rationale:
    Parkinson’s disease is associated with the appearance of large, intracellular aggregates termed Lewy bodies consisting of damaged, truncated, aggregated and misfolded proteins...

  • Target Validation, 2012
    Antiparkinsonian Effects of T-type Calcium Channel Inhibitors

    Objective/Rationale:
    Parkinson’s disease is associated with changes in the electrical activity of nerve cells in the basal ganglia and thalamus, including the emergence of abnormal burst discharges...

  • Rapid Response Innovation Awards, 2012
    A Genetic Strategy to Restore Impaired Noradrenergic Function by Increasing Expression of Noradrenergic Phenotypes in the Locus Coeruleus in Parkinson’s Disease Pre-clinical Models

    Objective/Rationale:
    Compelling evidence demonstrated that a dysfunction of the locus coeruleus (LC)-
    noradrenaline (NE) system in the brain not only contributes to alterations in
    cognitive and motor...

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