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Dr Ronan Lordan
Available to discuss new collaborations, science communication, outreach or speaking opportunities. Contact via email.


School of Pharmacy and Biomolecular Sciences, FutureNeuro Research Ireland Center, Royal College of Surgeons in Ireland (RCSI). Dublin, Ireland.



Rhythms in your bones: how circadian rhythms impact bone cell function and skeletal health.


Journal article


C. Gorgun, R. Lordan, O. Kennedy, D. A. Hoey, Annie M. Curtis
Trends in Molecular Medicine, 2026

Semantic Scholar DOI PubMed
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APA   Click to copy
Gorgun, C., Lordan, R., Kennedy, O., Hoey, D. A., & Curtis, A. M. (2026). Rhythms in your bones: how circadian rhythms impact bone cell function and skeletal health. Trends in Molecular Medicine.


Chicago/Turabian   Click to copy
Gorgun, C., R. Lordan, O. Kennedy, D. A. Hoey, and Annie M. Curtis. “Rhythms in Your Bones: How Circadian Rhythms Impact Bone Cell Function and Skeletal Health.” Trends in Molecular Medicine (2026).


MLA   Click to copy
Gorgun, C., et al. “Rhythms in Your Bones: How Circadian Rhythms Impact Bone Cell Function and Skeletal Health.” Trends in Molecular Medicine, 2026.


BibTeX   Click to copy

@article{c2026a,
  title = {Rhythms in your bones: how circadian rhythms impact bone cell function and skeletal health.},
  year = {2026},
  journal = {Trends in Molecular Medicine},
  author = {Gorgun, C. and Lordan, R. and Kennedy, O. and Hoey, D. A. and Curtis, Annie M.}
}

Abstract

Circadian rhythms play a central role in how bone tissue is formed, resorbed, and remodelled during the 24-h cycle. Bone cells express core clock proteins, which coordinate the timing of these processes, each contributing differently to the balance between bone formation and resorption. These intrinsic bone-cell clocks are further influenced by external temporal cues, including hormonal effects and mechanical forces such as exercise. Taken together, these features indicate that skeletal bone tissue is significantly influenced by the peripheral clock. In this review, we summarise recent advances on how intrinsic and extrinsic timing cues interact to regulate skeletal physiology, and we discuss how emerging insights into bone circadian biology might inform therapeutic and regenerative strategies aimed at improving skeletal health.


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