Related Experiment Video
Updated: Jul 13, 2025

Microbiota Analysis Using Two-step PCR and Next-generation 16S rRNA Gene Sequencing
Published on: October 15, 2019
Pediatric multiple sclerosis: an integrated outlook at the interplay between genetics, environment and brain-gut
Uzochukwu Adabanya1, Ayoola Awosika2, Anosh Khan3
1Anatomical Sciences, Edward Via College of Osteopathic Medicine, Monroe, USA.
Abstract:
Multiple sclerosis (MS) is a debilitating autoimmune condition caused by demyelination, neurodegeneration and persistent inflammation of the central nervous system. Pediatric multiple sclerosis (PMS) is a relatively rare form of the disease that affects a significant number of individuals with MS. Environmental exposures, such as viral infections and smoking, can interact with MS-associated human leukocyte antigens (HLA) risk alleles and influence the immune response. Upregulation of immune response results in the disruption of immune balance leading to cascade of inflammatory events. It has also been established that gut microbiome dysbiosis poses a higher risk for pro-inflammation, and it is essentially argued to be the greatest environmental risk factor for MS. Dysbiosis can cause an unusual response from the adaptive immune system and significantly contribute to the development of disease in the host by activating pro-inflammatory pathways that cause immune-mediated disorders such as PMS, rendering the body more vulnerable to foreign attacks due to a weakened immune response. All these dynamic interactions between biological, environmental and genetic factors based on epigenetic study has further revealed that upregulation or downregulation of some genes/enzyme in the central nervous system white matter of MS patients produces a less stable form of myelin basic protein and ultimately leads to the loss of immune tolerance. The diagnostic criteria and treatment options for PMS are constantly evolving, making it crucial to have a better understanding of the disease burden on a global and regional scale. The findings from this review will aid in deepening the understanding of the interplay between genetic and environmental risk factors, as well as the role of the gut microbiome in the development of pediatric multiple sclerosis. As a result, healthcare professionals will be kept abreast of the early diagnostic criteria, accurately delineating other conditions that can mimic pediatric MS and to provide comprehensive care to individuals with PMS based on the knowledge gained from this research.
Insights
Pediatric multiple sclerosis (PMS) involves genetic, environmental, and gut microbiome factors. Understanding these interactions is key for early diagnosis and effective treatment of this autoimmune condition.
Area of Science:
- Neuroimmunology
- Genetics
- Microbiome research
Background:
- Multiple sclerosis (MS) is an autoimmune disease impacting the central nervous system.
- Pediatric multiple sclerosis (PMS) affects a notable number of individuals, with complex etiological factors.
- Genetic predisposition (HLA alleles), environmental exposures (viral infections, smoking), and gut microbiome dysbiosis are implicated in MS pathogenesis.
Purpose of the Study:
- To explore the interplay of genetic and environmental risk factors in pediatric multiple sclerosis.
- To elucidate the role of gut microbiome dysbiosis in the development of PMS.
- To provide insights for improved understanding, diagnosis, and care of PMS.
Main Methods:
- Review of existing literature on genetic, environmental, and microbiome factors in MS and PMS.
- Analysis of epigenetic studies investigating gene/enzyme regulation in MS.
- Synthesis of current knowledge on immune response modulation and its link to PMS.
Main Results:
- Genetic factors (HLA) and environmental exposures interact to influence immune responses in MS.
- Gut microbiome dysbiosis is a significant environmental risk factor, promoting pro-inflammatory pathways.
- Epigenetic alterations affect myelin basic protein stability and immune tolerance in MS patients.
Conclusions:
- A comprehensive understanding of genetic, environmental, and microbiome interactions is crucial for PMS.
- Early diagnostic criteria and evolving treatment options require continuous updates.
- This review aids healthcare professionals in diagnosing and managing PMS effectively.
Related Concept Videos
Physiology of Enteric Nervous System and Gut Health
Irritable Bowel Syndrome I: Introduction
IBS is a chronic condition that can persist over a long period or recur frequently.
The pathogenesis of IBS involves a complex interplay of the following factors:
Altered...
Inflammatory Bowel Disease III: Diagnostic Studies and Management I-Nutritional Therapy
Diagnostic studies
A colonoscopy is the definitive screening test, distinguishing ulcerative colitis from other colon diseases with similar symptoms. During a colonoscopy test, inflamed mucosa with exudate ulcerations can be observed, and biopsies are taken to determine the histologic characteristics of the...
Chronic Bowel Disorders: Introduction
Irritable Bowel Syndrome (IBS) is a common disorder affecting the gastrointestinal tract. The distinctive feature is recurrent abdominal pain associated with altered bowel movements, manifesting as constipation, diarrhea, or fluctuating between both. The...
Anatomy of the Intestines
Small Intestines
The small intestine is an ~7 meter-long tube with an inner diameter of just 2.5 cm. Since most nutrients are absorbed here, the inner lining of the...
Gastrointestinal Motility Disorders

