The contribution of microglia to early synaptic compensatory responses that precede β-amyloid-induced neuronal death

Sara Merlo1, Simona Federica Spampinato1, Martina Beneventano1

  • 1Department of Biomedical and Biotechnological Sciences, section of Pharmacology, University of Catania, Catania, Italy.

Scientific Reports
|May 10, 2018
PubMed

Insights

Microglia support neuronal survival against Alzheimer's Disease (AD) by releasing factors that protect synapses from amyloid-beta (Aβ) toxicity. This glial support mechanism enhances synaptic function and promotes neuroprotection in early AD stages.

Area of Science:

  • Neuroscience
  • Cell Biology
  • Neurodegenerative Diseases

Background:

  • Glial-neuronal communication is crucial in neurodegenerative disorders like Alzheimer's Disease (AD).
  • Microglia, the brain's immune cells, influence neuronal responses to amyloid-beta (Aβ) peptide toxicity.

Purpose of the Study:

  • To investigate the role of glial signaling in regulating synaptic responses to Aβ.
  • To identify factors mediating microglial support of neuronal health under Aβ challenge.

Main Methods:

  • Utilized rat organotypic hippocampal cultures and primary microglia exposed to aggregated Aβ42.
  • Assessed brain-derived neurotrophic factor (BDNF) expression and release.
  • Examined effects of microglial conditioned media on synaptophysin expression and synaptic vesicle recycling in neuronal-like cells.

Main Results:

  • Low-concentration Aβ42 upregulated BDNF in microglia and hippocampal cultures.
  • Microglial conditioned media protected against Aβ-induced synaptophysin loss and rescued synaptic vesicle recycling.
  • Neuroprotection was mediated by microglial autocrine BDNF signaling, not direct neuronal BDNF action.

Conclusions:

  • Microglia play a protective role in counteracting Aβ synaptotoxicity.
  • Targeting microglial function represents a potential early intervention strategy for AD.
  • Glial support contributes to neuronal compensatory mechanisms and extended survival in AD pathogenesis.

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