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Published on: December 26, 2016
Early monocyte modulation by the non-erythropoietic peptide ARA 290 decelerates AD-like pathology progression
Mohammed A Al-Onaizi1, Peter Thériault2, Sarah Lecordier3
1Department of Anatomy, Faculty of Medicine, Kuwait University, Kuwait City, Kuwait; Department of Molecular Medicine, Faculty of Medicine, Université Laval, Quebec City, QC, Canada.
Abstract:
Alzheimer's disease (AD) pathology is characterized by amyloid-β (Aβ) deposition and tau hyper-phosphorylation, accompanied by a progressive cognitive decline. Monocytes have been recently shown to play a major role in modulating Aβ pathology, and thereby have been pointed as potential therapeutic targets. However, the main challenge remains in identifying clinically relevant interventions that could modulate monocyte immune functions in absence of undesired off-target effects. Erythropoietin (EPO), a key regulator of erythrocyte production, has been shown to possess immunomodulatory potential and to provide beneficial effects in preclinical models of AD. However, the transition to use recombinant human EPO in clinical trials was hindered by unwanted erythropoietic effects that could lead to thrombosis. Here, we used a recently identified non-erythropoietic analogue of EPO, ARA 290, to evaluate its therapeutic potential in AD therapy. We first evaluated the effects of early systemic ARA 290 administration on AD-like pathology in an early-onset model, represented by young APP/PS1 mice. Our findings indicate that ARA 290 early treatment decelerated Aβ pathology progression in APP/PS1 mice while improving cognitive functions. ARA 290 potently increased the levels of total monocytes by specifically stimulating the generation of Ly6CLow patrolling subset, which are implicated in clearing Aβ from the cerebral vasculature, and subsequently reducing overall Aβ burden in the brain. Moreover, ARA 290 increased the levels of monocyte progenitors in the bone marrow. Using chimeric APP/PS1 mice in which Ly6CLow patrolling subset are selectively depleted, ARA 290 was inefficient in attenuating Aβ pathology and ameliorating cognitive functions in young animals. Interestingly, ARA 290 effects were compromised when delivered in a late-onset model, represented by aged APP1/PS1. In aged APP/PS1 mice in which AD-like pathology is at advanced stages, ARA 290 failed to reverse Aβ pathology and to increase the levels of circulating monocytes. Our study suggests that ARA 290 early systemic treatment could prevent AD-like progression via modulation of monocyte functions by specifically increasing the ratio of patrolling monocytes.
Insights
Early treatment with ARA 290, a non-erythropoietic erythropoietin analogue, decelerated Alzheimer's disease (AD) pathology and improved cognition in mice by boosting patrolling monocytes.
Area of Science:
- Neuroscience
- Immunology
- Pharmacology
Background:
- Alzheimer's disease (AD) involves amyloid-β (Aβ) plaques and tau tangles, leading to cognitive decline.
- Monocytes influence Aβ pathology, presenting a therapeutic target, but interventions must avoid off-target effects.
- Erythropoietin (EPO) shows promise in AD models but carries risks of thrombosis; ARA 290 is a non-erythropoietic analogue.
Purpose of the Study:
- To evaluate the therapeutic potential of ARA 290 in an early-onset Alzheimer's disease mouse model.
- To investigate ARA 290's mechanism of action on monocyte subsets and Aβ pathology.
- To assess ARA 290's efficacy in both early and late-stage AD models.
Main Methods:
- Systemic administration of ARA 290 to young APP/PS1 mice (early-onset model).
- Analysis of Aβ pathology, cognitive function, and monocyte populations (including Ly6C Low subset) in treated mice.
- Evaluation of ARA 290 in aged APP/PS1 mice (late-onset model) and chimeric mice with depleted Ly6C Low monocytes.
Main Results:
- Early ARA 290 treatment decelerated Aβ pathology and improved cognitive function in young APP/PS1 mice.
- ARA 290 increased total monocytes by stimulating Ly6C Low patrolling monocytes, which clear Aβ.
- ARA 290's efficacy was diminished in aged mice and in chimeric mice lacking Ly6C Low monocytes, indicating dependence on this subset.
Conclusions:
- Early systemic ARA 290 administration shows therapeutic potential for AD by modulating monocyte function.
- ARA 290 specifically enhances the patrolling Ly6C Low monocyte subset, crucial for Aβ clearance.
- The timing of ARA 290 intervention is critical, with greater efficacy observed in early-stage AD models.
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