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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, 2011
    Lead Optimization and Pharmacological Characterization of Selective mGluR3 PAMs as Novel Neuroprotective Agents for Parkinson's Disease

    Objective/Rationale:
    mGluR3 is a novel target that could lead to neuroprotection through production of GDNF and TGF-beta in striatal neurons. The goals of the current project are first to optimize...

  • MJFF Research Grant, 2011
    Alpha-synuclein Expression Lowering therapeutics: Hit Confirmation

    Objective/Rationale:
    Simply increasing dosage of the wild-type alpha-synuclein gene (SNCA) is sufficient to cause dopaminergic neurodegeneration and Parkinson’s disease in rare families carrying an...

  • LRRK2, 2011
    Identification of the LRRK2 Phosphatase

    Objective/Rationale:
    Exactly how Parkinson’s disease (PD) develops is not known, however current research indicates that the leucine rich repeat kinase 2 (LRRK2) protein plays a central role in the...

  • Rapid Response Innovation Awards, 2011
    Use of HspB1 Chaperone to Inhibit Pathological Alpha-synuclein Aggregation

    Objective/Rationale:
    The misfolding and aggregation of the protein alpha-synuclein has been identified as pivotal event causing Parkinson's disease. All cells in our body possess so-called chaperones...

  • Target Validation, 2011
    Ghrelin Agonist as a Novel Therapeutic Approach to Alleviate Gut Dysmotility and Levodopa-inhibited Gastric Emptying in PD Models

    Objective/Rationale:

    Patients with Parkinson’s disease (PD) have altered progression of ingested aliments/liquid from their stomach to the intestine, as well as suffer from constipation, and there is...

  • MJFF Research Grant, 2011
    Structural, Post-translational Modification and Small Chemical Approaches to Understand LRRK2 Function in PD

    Promising Outcomes of Original Grant:
    Our original goal was to (1) establish electron microscopy (EM)-based dimeric structural assays for the LRRK2 protein and (2) develop high-throughput kinase assays...

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Our funding programs support basic, translational and clinical research from academia and industry.

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