Meningeal regulatory T cells inhibit nociception in female mice.

Midavaine, Élora; Moraes, Beatriz C; Benitez, Jorge; Rodriguez, Sian R; Braz, Joao M; Kochhar, Nathan P; Eckalbar, Walter L; Tian, Lin et al. · Science · 2025

basic_science · Level V

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Abstract

T cells have emerged as orchestrators of pain amplification, but the mechanism by which T cells control pain processing is unresolved. We found that regulatory T cells (T<sub>reg</sub> cells) could inhibit nociception through a mechanism that was not dependent on their ability to regulate immune activation and tissue repair. Site-specific depletion or expansion of meningeal T<sub>reg</sub> cells (mT<sub>reg</sub> cells) in mice led to female-specific and sex hormone-dependent modulation of mechanical sensitivity. Specifically, mT<sub>reg</sub> cells produced the endogenous opioid enkephalin that exerted an antinociceptive action through the delta opioid receptor expressed by MrgprD<sup>+</sup> sensory neurons. Although enkephalin restrains nociceptive processing, it was dispensable for T<sub>reg</sub> cell-mediated immunosuppression. Thus, our findings uncovered a sexually dimorphic immunological circuit that restrains nociception, establishing T<sub>reg</sub> cells as sentinels of pain homeostasis.

Medical subject headings