Alzheimer’s disease (AD) is characterized by the early accumulation of amyloid beta (Aβ) plaques, followed by the formation of tau aggregates and progressive neurodegeneration, ultimately manifesting as dementia. Recent developments in anti Aβ antibody therapies have marked a breakthrough in disease management. However, these treatments remain costly, require intravenous administration, and provide only limited clinical benefit. There is therefore a pressing need for safe, affordable therapies, which would ideally be small molecules that can be administered orally over extended periods.
Targeting γ secretase, the enzyme responsible for Aβ production, has long been considered a promising therapeutic strategy, but its development has proven challenging. Novel γ secretase allosteric modulators (GAMs) operate via a fundamentally different mechanism: they selectively increase the production of shorter, non toxic Aβ species while reducing the generation of longer, aggregation prone Aβ peptides that drive neurodegeneration. Despite their potential, these next generation GAMs still lack sufficient evidence regarding their safety and efficacy in preventing AD.
The current ERC Proof of Concept project, GALOMOD, aims to generate comprehensive in vitro and in vivo data on the efficacy, specificity, and safety of a newly developed GAM compound. Specifically, the project will:
1. Acquire and benchmark the novel GAM against existing academic and industrial γ secretase–targeting compounds.
2. Evaluate its ability to promote the production of shorter Aβ species in cultured human neurons, and assess its effects on other γ secretase substrates to determine specificity.
3. Test the compound’s efficacy in modulating γ secretase activity in neurons derived from familial AD patients.
4. Assess its therapeutic potential in an in vivo mouse model of AD.
5. Conduct a market analysis of GAMs as preventive or maintenance therapies for AD.