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Published on: February 9, 2020
Lame ducks or fierce creatures? The role of oligodendrocytes in multiple sclerosis
1Neurobiology, Department of Biomedicine, University Hospital Basel, Pharmacenter 7007, Klingelbergstrasse 50/70, CH-4056 Basel, Switzerland.
Abstract:
In the pathogenesis of multiple sclerosis (MS), oligodendrocytes and its myelin sheaths are thought to be the primary target of destruction. The mechanism leading to oligodendrocyte injury and demyelination is still elusive. Oligodendrocytes are maintaining up to 50 internodes of myelin, which is an extraordinary metabolic demand. This makes them one of the most vulnerable cell types in the central nervous system (CNS), and even small insults can lead to oligodendrocyte impairment, demyelination, and axonal dysfunction. For this reason, oligodendrocytes are viewed as more or less the "lame ducks" of the CNS who can easily become victims. However, recent data demonstrate that this perception possibly needs to be revised. The latest data suggest that oligodendrocytes may also act as "fierce creatures," influencing the surrounding cells in many ways to preserve its own, as well as their function, allowing sustained functionality of the CNS upon an attack. In this review, the concept of "reactive or activated oligodendrocyte" is introduced, describing alterations in oligodendrocytes which are either protective mechanisms allowing survival in otherwise lethal environment or influence and possibly modulate the ongoing inflammation. Although "harnessed", oligodendrocytes might actively modulate and shape their environment and be part of the immune privilege of the brain.
Insights
Oligodendrocytes, crucial for myelin in multiple sclerosis (MS), are not just victims but can actively protect the central nervous system (CNS). This review explores the concept of the "reactive oligodendrocyte" and its role in CNS defense.
Area of Science:
- Neuroscience
- Immunology
- Cell Biology
Background:
- Oligodendrocytes are central to myelin sheath maintenance in the central nervous system (CNS).
- Their high metabolic demand makes them vulnerable in diseases like multiple sclerosis (MS).
- Traditionally viewed as passive targets, their role is being re-evaluated.
Purpose of the Study:
- To introduce and explore the concept of the
Main Methods:
- Review of current literature on oligodendrocyte function and response to injury.
- Analysis of emerging data on oligodendrocyte plasticity and interaction with the immune system.
Main Results:
- Oligodendrocytes exhibit 'reactive' or 'activated' states, suggesting active roles beyond passive vulnerability.
- These activated states involve protective mechanisms for oligodendrocyte survival.
- Activated oligodendrocytes can modulate the CNS environment and inflammation.
Conclusions:
- The perception of oligodendrocytes as solely vulnerable cells in MS pathogenesis needs revision.
- Oligodendrocytes may actively participate in CNS defense and immune modulation.
- Understanding the 'reactive oligodendrocyte' offers new insights into MS pathology and potential therapeutic strategies.
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