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Dynamic changes in myelin aberrations and oligodendrocyte generation in chronic amyloidosis in mice and men
Gwendolyn Behrendt1, Kristin Baer, Annalisa Buffo
1Department of Physiological Genomics, Institute of Physiology, Ludwig-Maximilians University, Munich, Germany.
Abstract:
Myelin loss is frequently observed in human Alzheimer's disease (AD) and may constitute to AD-related cognitive decline. A potential source to repair myelin defects are the oligodendrocyte progenitor cells (OPCs) present in an adult brain. However, until now, little is known about the reaction of these cells toward amyloid plaque deposition neither in human AD patients nor in the appropriate mouse models. Therefore, we analyzed cells of the oligodendrocyte lineage in a mouse model with chronic plaque deposition (APPPS1 mice) and samples from human patients. In APPPS1 mice defects in myelin integrity and myelin amount were prevalent at 6 months of age but normalized to control levels in 9-month-old mice. Concomitantly, we observed an increase in the proliferation and differentiation of OPCs in the APPPS1 mice at this specific time window (6-8 months) implying that improvements in myelin aberrations may result from repair mechanisms mediated by OPCs. However, while we observed a higher number of cells of the oligodendrocyte lineage (Olig2+ cells) in APPPS1 mice, OLIG2+ cells were decreased in number in postmortem human AD cortex. Our data demonstrate that oligodendrocyte progenitors specifically react to amyloid plaque deposition in an AD-related mouse model as well as in human AD pathology, although with distinct outcomes. Strikingly, possible repair mechanisms from newly generated oligodendrocytes are evident in APPPS1 mice, whereas a similar reaction of oligodendrocyte progenitors seems to be strongly limited in final stages of human AD pathology.
Insights
Oligodendrocyte progenitor cells (OPCs) attempt to repair myelin loss in Alzheimer's disease (AD) mouse models. However, this repair is limited in human AD, suggesting distinct disease mechanisms.
Area of Science:
- Neuroscience
- Cell Biology
- Pathology
Background:
- Myelin loss is a hallmark of Alzheimer's disease (AD), contributing to cognitive decline.
- Oligodendrocyte progenitor cells (OPCs) are crucial for myelin repair in the adult brain.
Purpose of the Study:
- To investigate the response of OPCs to amyloid plaque deposition in an AD mouse model and human AD patients.
- To understand the potential of OPCs in myelin repair in the context of AD pathology.
Main Methods:
- Analysis of oligodendrocyte lineage cells in APPPS1 mice (a model of chronic plaque deposition).
- Examination of postmortem human AD brain samples.
- Assessment of myelin integrity, myelin amount, and OPC proliferation/differentiation.
Main Results:
- APPPS1 mice showed myelin defects at 6 months, which normalized by 9 months, correlating with increased OPC proliferation and differentiation.
- While oligodendrocyte lineage cells (Olig2+ cells) increased in APPPS1 mice, they decreased in human AD cortex.
- Evidence of OPC-mediated myelin repair mechanisms was observed in the mouse model.
Conclusions:
- Oligodendrocyte progenitors react to amyloid plaque deposition in both AD mouse models and human pathology, but with different outcomes.
- Repair mechanisms involving OPCs are apparent in the mouse model but appear limited in advanced human AD.
- These findings highlight distinct responses of myelin repair pathways in AD progression.

