γδ T Cells in Brain Homeostasis and Diseases.

Front Immunol

Graduate School of Medical Science and Engineering, Korea Advanced Institute of Science and Technology (KAIST), Daejeon, South Korea.

Published: June 2022

AI Article Synopsis

  • γδ T cells are a unique type of T cell that have distinct receptors (γδ TCR) and play important roles in various bodily functions and diseases, primarily found in mucosal surfaces and the central nervous system.
  • They are particularly significant in the meninges of the brain, where they contribute to brain function and can influence inflammatory responses in neurodegenerative diseases.
  • Despite their recognized importance, the specific roles of γδ T cells in the brain are still not fully understood, highlighting the need for further research to clarify their functions in neuroimmune interactions.

Article Abstract

γδ T cells are a distinct subset of T cells expressing γδ T cell receptor (TCR) rather than αβTCR. Since their discovery, the critical roles of γδ T cells in multiple physiological systems and diseases have been investigated. γδ T cells are preferentially located at mucosal surfaces, such as the gut, although a small subset of γδ T cells can circulate the blood. Additionally, a subset of γδ T cells reside in the meninges in the central nervous system. Recent findings suggest γδ T cells in the meninges have critical roles in brain function and homeostasis. In addition, several lines of evidence have shown γδ T cells can infiltrate the brain parenchyma and regulate inflammatory responses in multiple diseases, including neurodegenerative diseases. Although the importance of γδ T cells in the brain is well established, their roles are still incompletely understood due to the complexity of their biology. Because γδ T cells rapidly respond to changes in brain status and regulate disease progression, understanding the role of γδ T cells in the brain will provide critical information that is essential for interpreting neuroimmune modulation. In this review, we summarize the complex role of γδ T cells in the brain and discuss future directions for research.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9181321PMC
http://dx.doi.org/10.3389/fimmu.2022.886397DOI Listing

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