To save researchers time and resources, The Michael J. Fox Foundation has made a number of tools available to the scientific community at low cost, with rapid delivery.
Helpful Resources
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Sponsored Tools Program
Learn more about how MJFF can help share your tools.
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Tools Consortium
MJFF is working with industry to develop priority tools.
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Preclinical Models
Learn more about the various in vivo models used in Parkinson's disease research.
Find a Research Tool
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LRRK2 pT1491 Phosphospecific Antibody
Antibody
Rabbit monoclonal phosphospecific antibody directed against Threonine1491 of LRRK2.
Microtubule-Associated Protein Tau Plasmids
DNA Plasmids
DNA Plasmids encoding various MAPT cDNA inserts
VPS35 Plasmids
DNA Plasmids
DNA Plasmids encoding various VPS35 cDNA inserts
PINK1 Plasmids
DNA Plasmids
DNA Plasmids encoding various PINK1 cDNA inserts
Parkin Plasmids
DNA Plasmids
DNA Plasmids encoding various Parkin cDNA inserts
LRRK2 pT1503 Phosphospecific Antibody
Antibody
Rabbit monoclonal phosphospecific antibody directed against Threonine1503 of LRRK2.
LRRK2 pS1292 Phosphospecific Antibody
Antibody
This rabbit monoclonal phosphospecific antibody was directed against human LRRK2 (aa 1250-1350, phospho S1292; the exact sequence is commercially sensitive). This antibody performs well in immunoblotting experiments from cell lysate.
Total Rab 8 Antibody (Hu/Ms/Rt)
Antibody
Rabbit monoclonal antibody directed against the human and rodent total Rab 8 protein. Suitable for immunoblot and immunoprecipitation experiments. This antibody epitope was mapped to C-terminus amino acids 190-196.
LRRK2 pS973 Phosphospecific Antibody
Antibody
Rabbit monoclonal phosphospecific antibody directed against Serine 973 of LRRK2.
Total Rab 8 Antibody
Antibody
Mouse monoclonal antibody directed against the human total Rab 8 protein. Suitable for immunoblot and immunostaining experiments. Epitope was mapped to amino acids 101-108.
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"We have shown, thanks in part to MJFF, that researchers now have in their pantry the right ‘ingredients’, to... help to drive forward PD drug development.”
Heather Melrose, PhD
Mayo Clinic