This review synthesizes the functional plasticity of MAIT cells in health and disease, highlighting the therapeutic efficacy and limitations of engineered MAIT cells for precise intervention.
Abstract
ABSTRACT Mucosal‐associated invariant T (MAIT) cells are a population of evolutionarily conserved, unconventional innate‐like T lymphocytes that are restricted by major histocompatibility complex Class I‐related (MR1) molecules. They can be activated either in a T‐cell receptor–MR1‐ or cytokine‐dependent manner. Activated MAIT cells play crucial roles in maintaining homeostasis and the fine regulation of the immune system. This review presents a systematic exploration of the development, biological characteristics, and multiple effects of MAIT cells in health and various diseases. In healthy individuals, MAIT cells maintain mucosal barrier integrity, participate in tissue repair after injury, and prevent excessive inflammation. In microbial infections, MAIT cells eliminate infected cells and modulate immune responses or become pathogenic when overactivated by superantigens. In the context of immune‐related diseases, MAIT cells migrate to inflamed tissues and become pathogenic by secreting tissue‐damaging cytokines or protective by modulating immune responses. Moreover, MAIT cells have been demonstrated to have therapeutic applications in controlling diseases through their use as cellular adjuvants, their increased activation by engineered bacteria, and their modification with chimeric antigen receptors. This review synthesizes the functional plasticity of MAIT cells in health and disease, highlighting the therapeutic efficacy and limitations of engineered MAIT cells for precise intervention.
Tissue-resident memory T (Trm) cells are a specialized subset of memory T cells that persist in peripheral tissues (skin, joints, intestine) without recirculating, serving as a frontline defense against pathogen reinfection. This protective function is exemplified by interleukin-15 (IL-15), C-X-C chemokine receptor typ...
An-Fang Huang, Zhong Liu, Wang-Dong Xu· International Immunopharmaco...· 0 citations
Abstract
Background The oral mucosa is a dynamic barrier. T‑cell dysregulation contributes to chronic oral mucosal inflammatory diseases, but the role of age‑related immune remodeling remains unclear.. Method We performed a narrative review of PubMed/Medline (1972–2026) on T‑cell subsets, immunosenescence, exhaustion,...
Huai-Jue Qiu, Yi-Lin Luo, L. Pu et al.· Journal of Oral Microbiology· 0 citations
Innate lymphoid cells (ILCs) lack antigen-specific receptors and are, consequently, distinct from conventional T and B lymphocytes. Nevertheless, they play a critical role in immune regulation through the rapid secretion of effector cytokines. Due to these functional properties, ILCs exhibit remarkable similarities to...
M. Gelmez, F. Oktelık, Ayşenur Kokoglu et al.· Immunology Letters· 0 citations
Type 2 (T2) immunity is classically associated with defense against helminths and environmental threats, from a physiological perspective, and with allergies and eosinophilic inflammatory diseases, in a pathological sense. However, growing evidence reveals that T2 pathways also support other essential homeostatic funct...
R. Jiménez-Saiz, S. Iborra, Carlos Blanco et al.· Allergy. European Journal of...· 0 citations
Innate immunity has long been viewed as the domain of circulating mobile immune cells orchestrating defense through systemic responses. However, this model cannot explain why some tissues can provide hyperlocal and confined protection to specific microenvironments that precede systemic leukocyte recruitment. A recent...
Type 3 innate lymphoid cells (ILC3s) constitute key components of mucosal innate immunity and serve key roles in maintaining mucosal barrier homeostasis and regulating inflammatory responses. The present review summarizes the biological characteristics and regulatory mechanisms of ILC3s, while discussing their interact...
Jing-Wen Zhang, Li-Li Bao, Jia-Xi Li et al.· International Journal of Mol...· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.