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Microbiota Analysis Using Two-step PCR and Next-generation 16S rRNA Gene Sequencing
Published on: October 15, 2019
Immunological and Clinical Effect of Diet Modulation of the Gut Microbiome in Multiple Sclerosis Patients: A Pilot
Marina Saresella1, Laura Mendozzi2, Valentina Rossi2
1Laboratory of Molecular Medicine and Biotechnology, Don Gnocchi Foundation, IRCCS, Milan, Italy.
Abstract:
Pathogenesis of autoimmune disorders, including multiple sclerosis (MS), has been linked to an alteration of the resident microbial commensal community and of the interplay between the microbiota and the immune system. Dietary components such as fiber, acting on microbiota composition, could, in principle, result in immune modulation and, thus, could be used to obtain beneficial outcomes for patients. We verified this hypothesis in a pilot study involving two groups of clinically similar relapsing-remitting (RR) MS patients who had undergone either a high-vegetable/low-protein diet (HV/LP diet group; N = 10) or a "Western Diet" (WD group; N = 10) for at least 12 months. Gut microbiota composition, analyzed by 16 S V4 rRNA gene sequencing and immunological profiles, was examined after a minimum of 12 months of diet. Results showed that, in the HV/LP diet group compared to the WD group: (1) Lachnospiraceae family was significantly more abundant; (2) IL-17-producing T CD4+ lymphocytes (p = 0.04) and PD-1 expressing T CD4+ lymphocytes (p = 0.0004) were significantly decreased; and (3) PD-L1 expressing monocytes (p = 0.009) were significantly increased. In the HV/LP diet group, positive correlations between Lachnospiraceae and both CD14+/IL-10+ and CD14+/TGFβ+monocytes (RSp = 0.707, p = 0.05, and RSp = 0.73, p = 0.04, respectively), as well as between Lachnospiraceae and CD4+/CD25+/FoxP3+ T lymphocytes (RSp = 0.68, p = 0.02) were observed. Evaluation of clinical parameters showed that in the HV/LP diet group alone the relapse rate during the 12 months follow-up period and the Expanded Disability Status Scale score at the end of the study period were significantly reduced. Diet modulates dysbiosis and improves clinical parameters in MS patients by increasing anti-inflammatory circuits. Because Lachnospiraceae favor Treg differentiation as well as TGFβ and IL-10 production this effect could be associated with an increase of these bacteria in the microbiota.
Insights
A high-vegetable/low-protein diet in multiple sclerosis (MS) patients increased beneficial gut bacteria, reduced inflammatory immune cells, and improved clinical outcomes. This dietary approach modulates the gut microbiota for better immune function in MS.
Area of Science:
- Immunology
- Microbiology
- Nutrition Science
Background:
- Autoimmune disorders like multiple sclerosis (MS) are linked to gut microbiota alterations and immune system interplay.
- Dietary fiber can influence microbiota composition and immune responses, potentially benefiting MS patients.
Purpose of the Study:
- To investigate the effects of a high-vegetable/low-protein (HV/LP) diet versus a Western Diet (WD) on gut microbiota and immune profiles in relapsing-remitting MS patients.
- To assess the clinical impact of dietary interventions on MS relapse rates and disability progression.
Main Methods:
- A pilot study compared 10 RRMS patients on an HV/LP diet with 10 on a WD for at least 12 months.
- Gut microbiota composition was analyzed using 16S rRNA gene sequencing.
- Immunological profiles, including T cell and monocyte populations, were examined.
Main Results:
- The HV/LP diet group showed increased Lachnospiraceae abundance compared to the WD group.
- HV/LP diet led to decreased IL-17+ CD4+ T cells and PD-1+ CD4+ T cells, and increased PD-L1+ monocytes.
- Positive correlations were observed between Lachnospiraceae and anti-inflammatory markers (IL-10, TGFβ) and regulatory T cells (Treg).
Conclusions:
- Dietary modulation, specifically an HV/LP diet, can alter gut dysbiosis in MS patients.
- This dietary intervention improves clinical parameters, including reduced relapse rates and disability.
- Increased Lachnospiraceae may promote Treg differentiation and anti-inflammatory cytokine production, contributing to improved immune balance in MS.
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