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Review

Interplay between Microbiota and γδ T Cells: Insights into Immune Homeostasis and Neuro-Immune Interactions

by
Alaa A. Mohamed
1,
Basel K. al-Ramadi
2,3 and
Maria J. Fernandez-Cabezudo
1,3,*
1
Department of Biochemistry and Molecular Biology, College of Medicine and Health Sciences, United Arab Emirates University, Al-Ain P.O. Box 15551, United Arab Emirates
2
Department of Medical Microbiology and Immunology, College of Medicine and Health Sciences, United Arab Emirates University, Al-Ain P.O. Box 15551, United Arab Emirates
3
Zayed Center for Health Sciences, United Arab Emirates University, Al Ain P.O. Box 15551, United Arab Emirates
*
Author to whom correspondence should be addressed.
Int. J. Mol. Sci. 2024, 25(3), 1747; https://doi.org/10.3390/ijms25031747
Submission received: 4 December 2023 / Revised: 3 January 2024 / Accepted: 4 January 2024 / Published: 1 February 2024
(This article belongs to the Special Issue The Role of Microbiota in Immunity and Inflammation)

Abstract

The gastrointestinal (GI) tract of multicellular organisms, especially mammals, harbors a symbiotic commensal microbiota with diverse microorganisms including bacteria, fungi, viruses, and other microbial and eukaryotic species. This microbiota exerts an important role on intestinal function and contributes to host health. The microbiota, while benefiting from a nourishing environment, is involved in the development, metabolism and immunity of the host, contributing to the maintenance of homeostasis in the GI tract. The immune system orchestrates the maintenance of key features of host–microbe symbiosis via a unique immunological network that populates the intestinal wall with different immune cell populations. Intestinal epithelium contains lymphocytes in the intraepithelial (IEL) space between the tight junctions and the basal membrane of the gut epithelium. IELs are mostly CD8+ T cells, with the great majority of them expressing the CD8αα homodimer, and the γδ T cell receptor (TCR) instead of the αβ TCR expressed on conventional T cells. γδ T cells play a significant role in immune surveillance and tissue maintenance. This review provides an overview of how the microbiota regulates γδ T cells and the influence of microbiota-derived metabolites on γδ T cell responses, highlighting their impact on immune homeostasis. It also discusses intestinal neuro-immune regulation and how γδ T cells possess the ability to interact with both the microbiota and brain.
Keywords: microbiota; inflammation; γδ T cells; dysbiosis; neurotransmitters microbiota; inflammation; γδ T cells; dysbiosis; neurotransmitters

Share and Cite

MDPI and ACS Style

Mohamed, A.A.; al-Ramadi, B.K.; Fernandez-Cabezudo, M.J. Interplay between Microbiota and γδ T Cells: Insights into Immune Homeostasis and Neuro-Immune Interactions. Int. J. Mol. Sci. 2024, 25, 1747. https://doi.org/10.3390/ijms25031747

AMA Style

Mohamed AA, al-Ramadi BK, Fernandez-Cabezudo MJ. Interplay between Microbiota and γδ T Cells: Insights into Immune Homeostasis and Neuro-Immune Interactions. International Journal of Molecular Sciences. 2024; 25(3):1747. https://doi.org/10.3390/ijms25031747

Chicago/Turabian Style

Mohamed, Alaa A., Basel K. al-Ramadi, and Maria J. Fernandez-Cabezudo. 2024. "Interplay between Microbiota and γδ T Cells: Insights into Immune Homeostasis and Neuro-Immune Interactions" International Journal of Molecular Sciences 25, no. 3: 1747. https://doi.org/10.3390/ijms25031747

APA Style

Mohamed, A. A., al-Ramadi, B. K., & Fernandez-Cabezudo, M. J. (2024). Interplay between Microbiota and γδ T Cells: Insights into Immune Homeostasis and Neuro-Immune Interactions. International Journal of Molecular Sciences, 25(3), 1747. https://doi.org/10.3390/ijms25031747

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