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Gene-environment Interaction Models to Unmask Susceptibility Mechanisms in Parkinson's Disease
Published on: January 7, 2014
Microglial response is poorly correlated with neurodegeneration following chronic, low-dose MPTP administration in
S D Hurley1, M K O'Banion, D D Song
1Department of Neurobiology and Anatomy, University of Rochester Medical Center, Rochester, NY 14642, USA. Sean_Hurley@urmc.rochester.edu
Abstract:
Many investigators have reported extensive microglial activation in the mouse substantia nigra and striatum following acute, high-dose 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP) administration. Our previous work demonstrated tyrosine hydroxylase (TH)-positive fiber sprouting in the striatum in monkeys that had received a partial dopaminergic lesion using a low-dose, chronic MPTP administration paradigm. To characterize the microglial response, we utilized HLA-DR (LN3) to immunolabel the class II major histocompatibility complex (MHC II). In MPTP-treated monkeys, there was an intense microglial response in the substantia nigra, nigrostriatal tract, and in both segments of the globus pallidus. This response was morphologically heterogeneous, with commingled ramified, activated, and multicellular morphologies throughout the extent of these basal ganglia structures. Surprisingly, there was little evidence of microglial reactivity in the striatum despite evidence of neurodegeneration-by silver labeling and by loss of TH immunolabeling. Moreover, this pattern of microglial reactivity was the same in all animals that had received MPTP and seemed to be independent of the degree of neurotoxin-induced neurodegeneration. Thus, we conclude that microglial reactivity, per se, is not consistently associated with neurodegeneration, but depends on regional differences.
Insights
Microglial activation in MPTP-treated monkeys varied by brain region, showing intense responses in the substantia nigra but not the striatum, despite neurodegeneration. This suggests regional differences influence microglial reactivity.
Area of Science:
- Neuroscience
- Immunology
- Toxicology
Background:
- Microglial activation is documented in mouse models of Parkinson's disease following MPTP exposure.
- Previous research showed tyrosine hydroxylase-positive fiber sprouting in MPTP-lesioned monkey striatum.
Purpose of the Study:
- To characterize the microglial response in MPTP-treated monkeys using HLA-DR (LN3) as a marker for MHC II.
- To investigate the relationship between microglial reactivity and neurodegeneration in different brain regions.
Main Methods:
- MPTP administration to induce partial dopaminergic lesions in monkeys.
- Immunolabeling using HLA-DR (LN3) to detect microglial activation.
- Silver staining and TH immunolabeling to assess neurodegeneration.
Main Results:
- Intense and heterogeneous microglial activation observed in the substantia nigra, nigrostriatal tract, and globus pallidus.
- Minimal microglial reactivity detected in the striatum, despite evidence of neurodegeneration and TH loss.
- The pattern of microglial response was consistent across animals and appeared independent of neurodegeneration severity.
Conclusions:
- Microglial reactivity is not uniformly associated with neurodegeneration and is influenced by regional differences within the basal ganglia.
- The substantia nigra and globus pallidus show significant microglial responses, while the striatum exhibits limited reactivity despite dopaminergic damage.
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