bioRxiv · 10.1101/2025.07.24.666347
The Alzheimer's therapeutic Lecanemab induces an amyloid-clearing program in microglia
Abstract
Controversies over anti-amyloid immunotherapies underscore the need to elucidate their mechanisms of action. Here we demonstrate that Lecanemab, a leading anti-A{beta} antibody, mediates amyloid clearance by triggering effector functions in the microglia. Using a human microglia xenograft model, we show that Lecanemab significantly reduces A{beta} pathology and associated neuritic damage, while neither Fc-inactivated Lecanemab nor microglia deficiency elicit this effect despite intact plaque binding. Single-cell RNA sequencing and spatial transcriptomic analyses reveal that Lecanemab induces a focused transcriptional program that enhances phagocytosis, lysosomal degradation, metabolic reprogramming, interferon gamma genes, and antigen presentation. Finally, we identify SPP1/osteopontin as a major factor induced by Lecanemab treatment and demonstrate its role in promoting A{beta} clearance. These findings highlight that effective amyloid removal depends on the engagement of microglia through Fc fragment, providing critical insights for optimizing anti-amyloid therapies in AD.
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Albertini, G., Zielonka, M., Cuypers, M.-L., Snellinx, A., Xu, C., Poovathingal, S., Wojno, M., Davie, K., van Lieshout, V., Craessaerts, K., Wolfs, L., Pasciuto, E., Jaspers, T., Horre, K., Serneels, L., Fiers, M., Dewilde, M., De Strooper, B.. 2025-07-27. The Alzheimer's therapeutic Lecanemab induces an amyloid-clearing program in microglia. https://doi.org/10.1101/2025.07.24.666347
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