Microglia activation mediated by toll-like receptor-4 impairs brain white matter tracts in rats

Xinglong Yang1, Jing-Dong Zhang2, Lian Duan1

  • 1Department of Neurosurgery, Affiliated Hospital to Academy of Military Medicine Sciences, Beijing 100071, China.

Insights

Early microglia activation impairs white matter function, leading to axon injury. A toll-like receptor 4 (TLR-4) antagonist reversed this impairment, suggesting TLR-4 pathway involvement in microglia-driven white matter damage.

Area of Science:

  • Neuroscience
  • Immunology
  • Cell Biology

Background:

  • Microglia activation and white matter injury often occur together after brain trauma and stroke.
  • It remains unclear if early microglia activation contributes to white matter dysfunction.

Purpose of the Study:

  • To investigate the role of early microglia activation in white matter tract function and injury.
  • To determine if blocking the toll-like receptor 4 (TLR-4) pathway can prevent microglia-induced white matter damage.

Main Methods:

  • Rat corpus callosum slices were treated with lipopolysaccharide (LPS) to induce microglia activation, with or without a TLR-4 antagonist (RS-LPS).
  • Functional changes were assessed by measuring axon compound action potentials (CAPs) and β-amyloid precursor protein (β-APP) accumulation.
  • Microglia activation was quantified using ionized calcium binding adaptor-1 staining.

Main Results:

  • LPS treatment dose-dependently impaired axon neurophysiological function, indicated by reduced CAPs and increased β-APP accumulation, suggesting impaired fast axonal transport.
  • Pre-treatment or co-incubation with RS-LPS significantly reversed LPS-induced functional deficits and β-APP accumulation.
  • RS-LPS alone did not affect CAPs, and the degree of functional impairment correlated with microglia activation levels.

Conclusions:

  • Early microglia activation, mediated by the TLR-4 pathway, impairs the function of white matter tracts.
  • Blocking the TLR-4 pathway with RS-LPS can reverse microglia-induced white matter dysfunction and axon transport deficits.

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