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van Lieshout, V.

Publications and source records attributed to van Lieshout, V..

2 recordsLinked to original sources

The Alzheimer's therapeutic Lecanemab induces an amyloid-clearing program in microglia

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.

neuroscience↗

Applying high-resolution spatial transcriptomics to characterise the amyloid plaque cell niche in Alzheimer's Disease

The amyloid plaque cell niche is a pivotal hallmark of Alzheimers disease (AD). Where early spatial transcriptomics (ST) technologies have provided valuable information on transcriptomic alterations in the small tissue domains overlaying with amyloid plaques, they lacked cellular resolution. Here we compare two novel high-resolution ST platforms, CosMx and Stereo-seq, in their ability to characterize the cellular response in the amyloid plaque niche in an AD mouse model. Combining the results from both techniques empowered us to survey the highly variable microglial-astrocytic response across the amyloid plaque micro-environment and provided a first insight into how these responses could relate to neuronal transcriptomic alterations. This pilot study demonstrates the great potential of high-resolution ST, while simultaneously highlighting limitations that, when addressed, will unleash the full power of these techniques to map the progression of molecular and cellular changes in the brains of AD patients.

neuroscience↗