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Science Advances· 2026Q1

Multiomics profiling identifies molecular and cellular signatures of regular exercise in human peripheral blood

Xuemei Song, Jingzhi Lv, Siliang Ge, Sihan Xu et al.

Short summary

Regular exercise enhances fatty acid oxidation and antioxidant metabolites in plasma, and epigenetically primes circulating immune cells for improved antigen presentation and effector functions.

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Key points

  • Regular exercise increases plasma levels of fatty acid oxidation and antioxidant metabolites.
  • Circulating antigen-presenting cells (APCs) and B cells show increased chromatin accessibility and gene transcription for antigen presentation.
  • CD8+ cytotoxic T and mature natural killer cells display epigenetic preactivation of effector functions.
  • Intercellular communication analysis reveals enhanced MHC-I/II signaling between APCs and T cells, and suppressed inflammatory networks in exercising individuals.

AI-generated from the title and abstract; the full text is not read.

Abstract

Regular exercise is well established to protect against metabolic disorders and bolster immunity, but the underlying molecular and cellular mechanisms remain incompletely understood. We integrated plasma metabolomics and lipidomics with single-cell transcriptomic and chromatin accessibility profiles from regularly exercising versus sedentary individuals. We observed that regular exercise was associated with enhanced fatty acid oxidation and antioxidant metabolites in plasma. In the circulating immune cells of exercising individuals, antigen-presenting cells (APCs), particularly classical monocytes and B cells, showed concordant increases in both chromatin accessibility and transcription of antigen presentation genes. CD8 + cytotoxic T and mature natural killer cells showed epigenetic preactivation of effector function. Intercellular communication analysis revealed that regular exercise enhanced major histocompatibility complex–I/II signaling between APCs and T cells and suppressed inflammatory networks. Together, these findings elucidate molecular mechanisms underlying the health benefits of regular exercise and offer a theoretical basis for enhancing public health and preventing chronic diseases.

The authors' abstract, as published at the source. Science Advances, 2026 · DOI ↗

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Field: Rehabilitation

RehabilitationMedicine