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Mice (Mus musculus) used in biomedical research are commonly housed at 19°C–23°C, below their thermoneutral zone (29°C–34°C), where metabolic homeostasis occurs. Although traditional housing exposes mice to chronic cold stress and modulates their immune response, the cellular mechanisms by which thermoneutrality shapes immune responses remain underdefined. CD4+ T cells are major contributors to host immunity through T cell receptor (TCR) signaling activated via recognition of peptide-major histocompatibility complex class II (pMHCII). We demonstrate that thermoneutral housing, compared to traditional housing, enhances tonic TCR signaling, upregulates genes associated with endogenous TCR stimulation, and increases TCR-driven TNF expression in CD4+ T cells. Mechanistically, these effects are in part dependent on tonic TCR engagement with self-pMHCII. In inflammatory disease models, thermoneutrality-driven increased CD4+ T cell TNF production correlates with amplified tissue inflammation. Together, these findings reveal how housing temperature may shape inflammatory responses through self-pMHCII-dependent TCR signaling in CD4+ T cells.
Sawada et al. (2026) studied this question.
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