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Rat Model of Widespread Cerebral Cortical Demyelination Induced by an Intracerebral Injection of Pro-Inflammatory Cytokines
Published on: September 21, 2021
Molecular mechanisms linking neuroinflammation and neurodegeneration in MS
1Focus Program Translational Neurosciences (FTN), Rhine Main Neuroscience Network (rmn2), Department of Neurology, University Medical Center of the Johannes-Gutenberg University Mainz, Langenbeckstr. 1, 55131 Mainz, Germany.
Abstract:
Multiple sclerosis (MS) is an inflammatory demyelinating autoimmune disorder of the central nervous system (CNS) and one of the leading causes of neurological deficits and disability in young adults in western countries. Current medical treatment mainly influences disease progression via immunomodulatory or immunosuppressive actions. Indeed, MS research has been foremost focused on inflammation in the CNS, but more recent evidence suggests that chronic disability in MS is caused by neurodegeneration. Imaging studies show an early involvement of neurodegeneration as brain atrophy and gray matter lesions can be observed at disease onset. Thus, neuroprotective treatment strategies and the elucidation of the molecular mechanisms underlying neurodegeneration in MS have attracted the attention of the scientific community. Experimental autoimmune encephalomyelitis (EAE; the most commonly used animal model for MS), novel in-vivo imaging techniques such as two-photon microscopy and recently discovered molecular changes have offered new insights into the pathogenesis of neuroinflammation as well as neurodegeneration in MS. This review focuses on the interaction between components of the immune system and the neuronal compartment, as well as describing the most important molecular mechanisms that lead to axonal and neuronal degeneration in MS and EAE.
Insights
Multiple sclerosis involves central nervous system inflammation and neurodegeneration. Understanding immune interactions and molecular mechanisms is key to developing neuroprotective treatments for multiple sclerosis (MS).
Area of Science:
- Neuroimmunology
- Neurodegeneration
- Central Nervous System (CNS) Disorders
Background:
- Multiple sclerosis (MS) is an autoimmune CNS disorder causing neurological deficits.
- Current treatments focus on immunomodulation, but neurodegeneration drives chronic disability.
- Early neurodegeneration, evident as brain atrophy, occurs at MS onset.
Purpose of the Study:
- To review the interaction between immune components and neurons in MS.
- To elucidate molecular mechanisms of neurodegeneration in MS and EAE.
- To highlight the importance of neuroprotective strategies in MS.
Main Methods:
- Review of current literature on MS pathogenesis.
- Analysis of findings from experimental autoimmune encephalomyelitis (EAE) models.
- Integration of insights from novel in-vivo imaging techniques.
Main Results:
- Evidence suggests neurodegeneration significantly contributes to MS disability.
- Molecular mechanisms linking neuroinflammation and neurodegeneration are being uncovered.
- Immune system components directly impact neuronal integrity in MS.
Conclusions:
- Neurodegeneration is a critical aspect of MS, necessitating neuroprotective approaches.
- Understanding immune-neuronal interactions is vital for MS therapeutic development.
- Further research into molecular mechanisms can guide novel treatment strategies.
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