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Motor and Hippocampal Dependent Spatial Learning and Reference Memory Assessment in a Transgenic Rat Model of Alzheimer's Disease with Stroke
Published on: March 22, 2016
Fyn inhibition rescues established memory and synapse loss in Alzheimer mice
Adam C Kaufman1, Santiago V Salazar1, Laura T Haas1
1Department of Cellular Neuroscience, Neurodegeneration, and Repair, Yale University School of Medicine, New Haven, CT.
Objective:
Currently no effective disease-modifying agents exist for the treatment of Alzheimer disease (AD). The Fyn tyrosine kinase is implicated in AD pathology triggered by amyloid-ß oligomers (Aßo) and propagated by Tau. Thus, Fyn inhibition may prevent or delay disease progression. Here, we sought to repurpose the Src family kinase inhibitor oncology compound, AZD0530, for AD.
Methods:
The pharmacokinetics and distribution of AZD0530 were evaluated in mice. Inhibition of Aßo signaling to Fyn, Pyk2, and Glu receptors by AZD0530 was tested by brain slice assays. After AZD0530 or vehicle treatment of wild-type and AD transgenic mice, memory was assessed by Morris water maze and novel object recognition. For these cohorts, amyloid precursor protein (APP) metabolism, synaptic markers (SV2 and PSD-95), and targets of Fyn (Pyk2 and Tau) were studied by immunohistochemistry and by immunoblotting.
Results:
AZD0530 potently inhibits Fyn and prevents both Aßo-induced Fyn signaling and downstream phosphorylation of the AD risk gene product Pyk2, and of NR2B Glu receptors in brain slices. After 4 weeks of treatment, AZD0530 dosing of APP/PS1 transgenic mice fully rescues spatial memory deficits and synaptic depletion, without altering APP or Aß metabolism. AZD0530 treatment also reduces microglial activation in APP/PS1 mice, and rescues Tau phosphorylation and deposition abnormalities in APP/PS1/Tau transgenic mice. There is no evidence of AZD0530 chronic toxicity.
Interpretation:
Targeting Fyn can reverse memory deficits found in AD mouse models, and rescue synapse density loss characteristic of the disease. Thus, AZD0530 is a promising candidate to test as a potential therapy for AD.
Insights
An oncology drug, AZD0530, effectively reversed memory deficits and synaptic loss in Alzheimer disease (AD) mouse models by inhibiting Fyn tyrosine kinase. This repurposing shows promise for AD therapy.
Area of Science:
- Neuroscience
- Pharmacology
- Biochemistry
Background:
- Alzheimer disease (AD) lacks effective disease-modifying treatments.
- Fyn tyrosine kinase is implicated in AD pathology, activated by amyloid-ß oligomers (Aßo) and affecting Tau.
- Inhibiting Fyn may offer a therapeutic strategy for AD.
Purpose of the Study:
- To repurpose the oncology compound AZD0530, a Src family kinase inhibitor, for Alzheimer disease treatment.
- To evaluate AZD0530's efficacy in preclinical AD models.
Main Methods:
- Pharmacokinetics and brain distribution of AZD0530 were assessed in mice.
- Inhibition of Aßo signaling pathways (Fyn, Pyk2, Glu receptors) by AZD0530 was tested.
- Cognitive function was evaluated using Morris water maze and novel object recognition tests.
- Synaptic markers, APP metabolism, and Tau phosphorylation were analyzed via immunohistochemistry and immunoblotting.
Main Results:
- AZD0530 potently inhibited Fyn, preventing Aßo-induced signaling and downstream phosphorylation of Pyk2 and NR2B Glu receptors.
- Treatment with AZD0530 fully rescued spatial memory deficits and synaptic depletion in APP/PS1 mice without affecting APP or Aß metabolism.
- AZD0530 reduced microglial activation and rescued Tau phosphorylation and deposition abnormalities in APP/PS1/Tau mice.
- No chronic toxicity was observed with AZD0530 treatment.
Conclusions:
- Targeting Fyn kinase activity can reverse memory impairments and synaptic loss in AD mouse models.
- AZD0530 demonstrates potential as a therapeutic candidate for Alzheimer disease.
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