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Emerging roles of microglia and neuroinflammation in Huntington's disease: From pathophysiology to clinical trials
Muna Abedrabbo1, Pardis Kazemian1, Colúm Connolly2
1Department of Medical Genetics, Centre for Molecular Medicine and Therapeutics, BC Children's Hospital, University of British Columbia, Vancouver, BC, Canada.
Abstract:
Microglia, the resident immune cells of the central nervous system, play a pivotal role in the response to Huntington's disease (HD) pathology. Through both cell-autonomous mechanisms and exposure to external pathogenic stimuli, microglia transition from a resting to an activated state, producing pro-inflammatory cytokines and chemokines that mediate inflammation. While this inflammatory response attempts to have a neuroprotective compensatory effect, chronic microglial activation exacerbates neuroinflammation, neurodegeneration and contributes to disease progression. Evidence from postmortem analyses and neuroimaging studies indicates that activated microglia are present in various stages of HD, correlating with neuronal degeneration and clinical symptoms. Enhanced microglial activation has been identified as an early predictor of disease onset, particularly in premanifest HD, highlighting the potential of targeting microglial pathways for therapeutic interventions. This review explores microglia's dual role in HD pathophysiology, exploring their contributions to both neuroinflammation and neuroprotection. It also examines recent advances in clinical trials aimed at modulating microglial activity, paving the way for novel therapeutic strategies to alter disease progression and improve patient outcomes.
Insights
Microglia, immune cells in the brain, have a dual role in Huntington's disease (HD). While initially protective, chronic activation worsens neuroinflammation and neurodegeneration, suggesting therapeutic targets.
Area of Science:
- Neuroimmunology
- Neurodegenerative Diseases
- Central Nervous System Disorders
Background:
- Microglia are the primary immune cells in the central nervous system.
- In Huntington's disease (HD), microglia transition from a resting to an activated state.
- This activation involves releasing inflammatory mediators, impacting disease progression.
Purpose of the Study:
- To explore the dual role of microglia in Huntington's disease (HD) pathophysiology.
- To examine the contribution of microglia to both neuroinflammation and neuroprotection in HD.
- To review therapeutic strategies targeting microglial pathways for HD.
Main Methods:
- Review of postmortem analyses in HD patients.
- Analysis of neuroimaging studies in HD.
- Examination of clinical trial data for microglial modulation in HD.
Main Results:
- Activated microglia are present throughout HD stages, correlating with neurodegeneration.
- Enhanced microglial activation predicts early disease onset, even in premanifest HD.
- Microglial activation presents both neuroprotective and neurotoxic effects in HD.
Conclusions:
- Microglial activation plays a complex, dual role in Huntington's disease.
- Targeting microglial pathways offers potential therapeutic avenues for HD.
- Modulating microglial activity may alter disease progression and improve patient outcomes.

