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DTI of the Visual Pathway - White Matter Tracts and Cerebral Lesions
Published on: August 26, 2014
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.
Abstract:
Microglia activation and white matter injury coexist after repeated episodes of mild brain trauma and ischemic stroke. Axon degeneration and demyelination can activate microglia; however, it is unclear whether early microglia activation can impair the function of white matter tracts and lead to injury. Rat corpus callosum (CC) slices were treated with lipopolysaccharide (LPS) or LPS + Rhodobacter sphaeroides (RS)-LPS that is a toll-like receptor 4 (TLR-4) antagonist. Functional changes reflected by the change of axon compound action potentials (CAPs) and the accumulation of β-amyloid precursor protein (β-APP) in CC nerve fibers. Microglia activation was monitored by ionized calcium binding adaptor-1 immunofluorescent stain, based on well-established morphological criteria and paralleled proportional area measurement. Input-output (I/O) curves of CAPs in response to increased stimuli were significantly downshifted in a dose-dependent manner in LPS (0.2, 0.5 and 1.0 µg/mL)-treated slices, implying that axons neurophysiological function was undermined. LPS caused significant β-APP accumulation in CC tissues, reflecting the deterioration of fast axon transport. LPS-induced I/O curve downshift and β-APP accumulation were significantly reversed by the pre-treatment or co-incubation with RS-LPS. RS-LPS alone did not change the I/O curve. The degree of malfunction was correlated with microglia activation, as was shown by the measurements of proportional areas. Function of CC nerve fibers was evidently impaired by microglia activation and reversed by a TLP-4 antagonist, suggesting that the TLP-4 pathway lead to microglia activation.
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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