bioRxiv · 10.1101/2022.03.11.483903
The AppNL-G-F mouse model of Alzheimer's disease is refractory to regulatory T cell treatment
Abstract
BackgroundAlzheimers Disease is a neurodegenerative disease with a neuroinflammatory component. Due to the multifunctional capacity of regulatory T cells to prevent and reverse inflammation, regulatory T cells have been proposed as a potential therapeutic in Alzheimers Disease, either as a direct cell therapy or through the use of IL2 as a biologic to expand the endogenous population. MethodsHere we characterize the longitudinal immunological changes occurring in T cells in the AppNL-G-F mouse model of Alzheimers disease. ResultsAge-dependent immunological changes, in both the brain and periphery, occurred in parallel in both AppNL-G-F mice and control AppNL mice. As the endogenous IL2 axis was disturbed with age, we sought to determine the effect of IL2 supplementation on disease progression. Using a genetic model of IL2 provision in the periphery or in the brain, we found that expanding regulatory T cells in either location was unable to alter the progression of key pathological events or behavioral changes. ConclusionThese results suggest that either the AppNL-G-F mouse model does not recapitulate key regulatory T cell-dependent process of Alzheimers disease, or that regulatory T cell therapy is not a promising candidate for APP-mutation-driven Alzheimers disease.
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Yshii, L., Mascali, L., Kouser, L., Lemaitre, P., Marino, M., Dooley, J., Burton, O., Haughton, J., Callaerts-Vegh, Z., de Strooper, B., Holt, M., Pasciuto, E., Liston, A.. 2022-03-14. The AppNL-G-F mouse model of Alzheimer's disease is refractory to regulatory T cell treatment. https://doi.org/10.1101/2022.03.11.483903
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