bioRxiv · 10.64898/2026.08.27.747657
Probing the transcriptome response to shivering in skeletal muscle using a multilayered bioinformatics approach
Abstract
Cold acclimation holds therapeutic potential for improving metabolic health. We previously demonstrated that repeated cold-induced shivering enhances insulin sensitivity in humans. However, the molecular pathways that underlie the skeletal muscle shivering response, and how these relate to beneficial physiological effects, remain poorly understood. In this study, we combined complementary bioinformatics approaches to allow in-depth analysis of the transcriptomic response of human skeletal muscle to repeated shivering. We identified a robust transcriptional signature and show a sex-specific component in the shivering skeletal muscle response, which seemed to diminish following cold adaptation. Our findings provide mechanistic insights into cold-induced muscle adaptations, shed light on potential interesting molecular targets for further investigation, and emphasize the importance of including both sexes in future cold acclimation studies.
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Kalkhoven, E., Baak, R. E., Hooiveld, G. J. E. J., Schrauwen, P., Hoeks, J., Raymakers, R., van der Stolpe, A., Kersten, S.. 2026-09-03. Probing the transcriptome response to shivering in skeletal muscle using a multilayered bioinformatics approach. https://doi.org/10.64898/2026.08.27.747657
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