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Published on: October 26, 2010
Lewy body-like alpha-synuclein inclusions trigger reactive microgliosis prior to nigral degeneration
Megan F Duffy1,2, Timothy J Collier1,3, Joseph R Patterson1
1Department of Translational Science and Molecular Medicine, Michigan State University, 400 Monroe Avenue NW, Grand Rapids, MI, 49503-2532, USA.
Background:
Converging evidence suggests a role for microglia-mediated neuroinflammation in Parkinson's disease (PD). Animal models of PD can serve as a platform to investigate the role of neuroinflammation in degeneration in PD. However, due to features of the previously available PD models, interpretations of the role of neuroinflammation as a contributor to or a consequence of neurodegeneration have remained elusive. In the present study, we investigated the temporal relationship of neuroinflammation in a model of synucleinopathy following intrastriatal injection of pre-formed alpha-synuclein fibrils (α-syn PFFS).
Methods:
Male Fischer 344 rats (N = 114) received unilateral intrastriatal injections of α-syn PFFs, PBS, or rat serum albumin with cohorts euthanized at monthly intervals up to 6 months. Quantification of dopamine neurons, total neurons, phosphorylated α-syn (pS129) aggregates, major histocompatibility complex-II (MHC-II) antigen-presenting microglia, and ionized calcium-binding adaptor molecule-1 (Iba-1) immunoreactive microglial soma size was performed in the substantia nigra. In addition, the cortex and striatum were also examined for the presence of pS129 aggregates and MHC-II antigen-presenting microglia to compare the temporal patterns of pSyn accumulation and reactive microgliosis.
Results:
Intrastriatal injection of α-syn PFFs to rats resulted in widespread accumulation of phosphorylated α-syn inclusions in several areas that innervate the striatum followed by significant loss (~ 35%) of substantia nigra pars compacta dopamine neurons within 5-6 months. The peak magnitudes of α-syn inclusion formation, MHC-II expression, and reactive microglial morphology were all observed in the SN 2 months following injection and 3 months prior to nigral dopamine neuron loss. Surprisingly, MHC-II immunoreactivity in α-syn PFF injected rats was relatively limited during the later interval of degeneration. Moreover, we observed a significant correlation between substantia nigra pSyn inclusion load and number of microglia expressing MHC-II. In addition, we observed a similar relationship between α-syn inclusion load and number of microglia expressing MHC-II in cortical regions, but not in the striatum.
Conclusions:
Our results demonstrate that increases in microglia displaying a reactive morphology and MHC-II expression occur in the substantia nigra in close association with peak numbers of pSyn inclusions, months prior to nigral dopamine neuron degeneration, and suggest that reactive microglia may contribute to vulnerability of SNc neurons to degeneration. The rat α-syn PFF model provides an opportunity to examine the innate immune response to accumulation of pathological α-syn in the context of normal levels of endogenous α-syn and provides insight into the earliest neuroinflammatory events in PD.
Insights
Reactive microglia and MHC-II expression peak in the substantia nigra months before dopamine neuron loss in a Parkinson
Area of Science:
- Neuroscience
- Immunology
- Neurodegenerative Diseases
Background:
- Microglia-mediated neuroinflammation is implicated in Parkinson's disease (PD) pathogenesis.
- Previous PD models have limitations in elucidating the temporal role of neuroinflammation.
- Investigating the timeline of neuroinflammation in synucleinopathy is crucial for understanding PD.
Purpose of the Study:
- To investigate the temporal relationship between neuroinflammation and neurodegeneration in a rat model of synucleinopathy.
- To examine the role of microglia activation in the early stages of Parkinson's disease pathology.
Main Methods:
- Intrastriatal injection of alpha-synuclein pre-formed fibrils (α-syn PFFs) in male Fischer 344 rats.
- Assessment of dopamine neuron loss, phosphorylated alpha-synuclein (pS129) aggregates, and MHC-II expressing microglia over 6 months.
- Quantification in the substantia nigra, cortex, and striatum to compare temporal patterns.
Main Results:
- α-syn PFF injection led to widespread pS129 accumulation and ~35% dopamine neuron loss within 5-6 months.
- Peak microglia activation (MHC-II expression, reactive morphology) occurred 2 months post-injection, preceding neuron loss by 3 months.
- A correlation was observed between pSyn inclusion load and MHC-II expressing microglia in the substantia nigra and cortex.
Conclusions:
- Increased microglia reactivity precedes and correlates with pathological alpha-synuclein accumulation, suggesting a role in SNc neuron vulnerability.
- The rat α-syn PFF model offers insights into early neuroinflammatory events in Parkinson's disease.
- This model allows for studying the innate immune response to pathological α-syn in the context of normal endogenous α-syn levels.
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