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Aβ42 Peptide Promotes Proliferation and Gliogenesis in Human Neural Stem Cells
A Bernabeu-Zornoza1, R Coronel1, C Palmer1
1Unidad de Regeneración Neural, Unidad Funcional de Investigación de Enfermedades Crónicas (UFIEC)-CROSADIS, Instituto de Salud Carlos III (ISCIII), Majadahonda, 28220, Madrid, Spain.
Abstract:
Amyloid-β 42 [Aβ1-42 (Aβ42)] is one of the main Aβ peptide isoforms found in amyloid plaques of brains with Alzheimer's disease (AD). Although Aβ42 is associated with neurotoxicity, it might mediate several normal physiological processes during embryonic brain development and in the adult brain. However, due to the controversy that exists in the field, relatively little is known about its physiological function. In the present work, we have analyzed the effects of different concentrations of monomeric Aβ42 on cell death, proliferation, and cell fate specification of human neural stem cells (hNSCs), specifically the hNS1 cell line, undergoing differentiation. Our results demonstrate that at higher concentrations (1 μM), Aβ42 increases apoptotic cell death and DNA damage, indicating that prolonged exposure of hNS1 cells to higher concentrations of Aβ42 is neurotoxic. However, at lower concentrations, Aβ42 significantly promotes cell proliferation and glial cell specification of hNS1 cells by increasing the pool of proliferating glial precursors, without affecting neuronal differentiation, in a concentration-dependent manner. At the molecular level, these effects could be mediated, at least in part, by GSK3β, whose expression is increased by treatment with Aβ42 and whose inhibition prevents the glial specification induced by Aβ42. Since the cellular and molecular effects are known to appear decades before the first clinical symptoms, these types of studies are important in discovering the underlying pathophysiological processes involved in the development of AD. This knowledge could then be used in diagnosing the disease at early stages and be applied to the development of new treatment options.
Insights
Amyloid-β 42 (Aβ42) shows dual effects: toxic at high concentrations but promotes neural stem cell proliferation and glial cell development at low concentrations, offering insights into Alzheimer
Area of Science:
- Neuroscience
- Cell Biology
- Biochemistry
Background:
- Amyloid-β 42 (Aβ42) is implicated in Alzheimer's disease (AD) pathology.
- The physiological role of Aβ42 in brain development and function remains controversial.
- Understanding Aβ42's effects on neural stem cells is crucial for AD research.
Purpose of the Study:
- To investigate the concentration-dependent effects of monomeric Aβ42 on human neural stem cells (hNSCs).
- To analyze Aβ42's impact on cell death, proliferation, and differentiation in hNSCs.
- To explore the molecular mechanisms underlying Aβ42's effects, focusing on GSK3β.
Main Methods:
- Treatment of hNS1 cell line with varying concentrations of monomeric Aβ42.
- Assessment of cell death, DNA damage, and proliferation.
- Analysis of cell fate specification, including neuronal and glial differentiation.
- Evaluation of GSK3β expression and the effect of its inhibition.
Main Results:
- High Aβ42 concentrations (1 μM) induced neurotoxicity, increasing apoptotic cell death and DNA damage.
- Low Aβ42 concentrations promoted hNSC proliferation and glial cell specification in a dose-dependent manner.
- Aβ42 increased GSK3β expression, and GSK3β inhibition blocked Aβ42-induced glial specification.
- Neuronal differentiation was not significantly affected by Aβ42 treatment.
Conclusions:
- Aβ42 exhibits concentration-dependent effects on neural stem cells, with low doses being potentially beneficial for glial development.
- GSK3β is involved in mediating Aβ42's effects on glial cell specification.
- These findings provide insights into early pathophysiological processes in AD and potential therapeutic targets.
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