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Output Catalog

ASAP is committed to accelerating the pace of discovery and informing a path to a cure for Parkinson’s disease through collaboration, research-enabling resources, and data sharing. We’ve created this catalog to showcase the research outputs and tools developed by ASAP-funded programs.

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DAB ANTIBODY (IHC) STAINING PROTOCOL

This is the basic protocol for antibody staining of formalin fixed paraffin embedded (FFPE) tissue.

Program: Collaborative Research Network
Team:
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Ercc1-/∆ mice

This research studies the model of a human progeroid syndrome

Program: Collaborative Research Network
Team:
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CamkIIa-cre;Ercc1-/fl mice

Neurons in the forebrain show elevated DNA damage and potential senescence, suggesting age-related cellular changes in the brain's higher cognitive functions.

Program: Collaborative Research Network
Team:
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Pole Test

The protocol describes the pole test for assessing motor coordination and balance in rodents.

Program: Collaborative Research Network
Team:
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Open Field

This protocol details about Open Field procedure.

Program: Collaborative Research Network
Team:
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Nestin-cre;Ercc1-/fl mice

Pan-neuronal cell types may experience higher levels of internal DNA damage and potential senescence due to various factors.

Program: Collaborative Research Network
Team:
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INTRAMUSCULAR PFF INJECTION

Protocol outlines intramuscular PFF injection in mice.

Program: Collaborative Research Network
Team:
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Loss of tau expression attenuates neurodegeneration associated with α-synucleinopathy

The authors examine the role of tau in the onset and progression of αS pathology using a transgenic mouse model of α-synucleinopathy lacking mouse tau expression.

Program: Collaborative Research Network
Team:
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Th-cre;Ercc1-/fl mice

Dopaminergic neurons may experience elevated DNA damage and potential senescence, suggesting implications for neurodegenerative disorders.

Program: Collaborative Research Network
Team:
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Oligo2-cre;Ercc1-/fl mice

Oligodendrocytes may experience higher levels of DNA damage and potential senescence due to internal factors.

Program: Collaborative Research Network
Team:
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Cx3cr1-cre;Ercc1-/fl mice

Microglia may experience higher levels of DNA damage and potential senescence due to internal factors.

Program: Collaborative Research Network
Team:
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Mouse Perfusion

The protocol outlines the process of mouse perfusion.

Program: Collaborative Research Network
Team:
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ROTAROD PROTOCOL

Protocol detailing the rotarod test procedure for research purposes.

Program: Collaborative Research Network
Team:
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Barnes et al (Preprint-03/24) – Datasets

Datasets connected to Barnes et al can be found in their preprint publication at https://doi.org/10.21203/rs.3.rs-3982325/v1.

Program: Collaborative Research Network
Team:
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Immunofluorescence Staining in Mouse Brain Tissue Sections

Protocol outlines immunofluorescence staining in mouse brain tissue sections.

Program: Collaborative Research Network
Team:
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