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Multiple Sclerosis: A Story of the Interaction Between Gut Microbiome and Components of the Immune System
Esraa Mohsen1, Hesham Haffez2,3, Sandra Ahmed4
1Department of Microbiology and Immunology, Faculty of Pharmacy, Helwan University, PO Box 11795, Cairo, Egypt.
Abstract:
Multiple sclerosis (MS) is defined as an inflammatory disorder that chronically affects the central nervous system of young people mostly and is distributed globally. It is associated with degeneration and demyelination of the myelin sheath around the nerves, resulting in multiple neurological disability symptoms ranging from mild to severe cases that end with paralysis sometimes. MS is one of the rising diseases globally that is unfortunately associated with reduced quality of life and adding national economic burdens. The definite MS mechanism is not clearly defined; however, all the previous researches confirm the role of the immune system as the master contributor in the pathogenesis. Innate and adaptive immune cells are activated peripherally then attracted toward the central nervous system (CNS) due to the breakdown of the blood-brain barrier. Recently, the gut-brain axis was shown to depend on gut metabolites that are produced by different microorganisms in the colon. The difference in microbiota composition between individuals is responsible for diversity in secreted metabolites that affect immune responses locally in the gut or systemically when reach blood circulation to the brain. It may enhance or suppress immune responses in the central nervous system (CNS) (repeated short forms); consequently, it may exacerbate or ameliorate MS symptoms. Recent data showed that some metabolites can be used as adjuvant therapy in MS and other inflammatory diseases. This review sheds light on the nature of MS and the possible interaction between gut microbiota and immune system regulation through the gut-brain axis, hence contributing to MS pathogenesis.
Insights
Multiple sclerosis (MS) is an inflammatory central nervous system disorder. Gut microbiota metabolites may influence immune responses, potentially impacting MS progression and offering new therapeutic avenues.
Area of Science:
- Neuroimmunology
- Microbiome Research
- Central Nervous System Disorders
Background:
- Multiple sclerosis (MS) is a chronic inflammatory central nervous system (CNS) disorder impacting young adults globally.
- MS pathogenesis involves immune cell activation and CNS damage, leading to neurological disability and reduced quality of life.
- The gut-brain axis, influenced by gut microbiota metabolites, is increasingly recognized for its role in systemic immune regulation.
Purpose of the Study:
- To review the nature of multiple sclerosis (MS).
- To explore the interaction between gut microbiota and immune system regulation via the gut-brain axis.
- To understand the contribution of this interaction to MS pathogenesis.
Main Methods:
- Literature review of existing research on MS, gut microbiota, and the gut-brain axis.
- Analysis of studies investigating microbial metabolites and their effects on immune responses.
- Synthesis of findings regarding the systemic impact of gut-derived metabolites on CNS immunity.
Main Results:
- Gut microbiota composition varies among individuals, leading to diverse metabolite production.
- These metabolites can modulate immune responses both locally in the gut and systemically in the CNS.
- Evidence suggests that gut metabolites can influence the exacerbation or amelioration of MS symptoms.
Conclusions:
- The gut-brain axis plays a significant role in regulating immune responses relevant to MS pathogenesis.
- Gut microbiota metabolites represent a potential target for novel adjuvant therapies in MS and other inflammatory diseases.
- Further research into the gut-brain axis interactions is crucial for understanding and managing MS.
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