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March 14, 2026Frontiers in Immunology3 citationsOpen Access

The impact of dyslipidemia on skeletal health - from an immunoregulatory perspective

BZBaisong ZhouSLShuai LiJSJiyu Song

Key Points

  • The aim is to evaluate how dyslipidemia influences bone health via immune modulation.
  • Reviewed literature on lipid metabolism and its effects on bone health.
  • Analyzed the interactions between immune cells and bone-regulating factors.
  • Explored the lipid–immune–bone axis and its implications in dyslipidemia.
  • Dyslipidemia alters adipokines, impacting bone formation and resorption.
  • High lipid levels shift macrophage polarization towards pro-inflammatory M1.
  • Imbalance in Treg and Th17 cells increases osteoclast formation.

Abstract

Dyslipidemia and obesity are key risk factors for cardiometabolic diseases and are also linked to osteoporosis and other bone disorders. Evidence shows lipid metabolism influences bone homeostasis largely through immune regulation. This review first explains how abnormal lipid metabolism disrupts adipogenic and osteogenic differentiation in bone marrow mesenchymal stem cells and alters adipokines like leptin and adiponectin, upsetting bone formation and resorption and leading to bone loss. It then examines the lipid–immune–bone axis. In innate immunity, high lipid levels shift macrophages from M2 to pro-inflammatory M1, increase bone-resorbing cytokines such as TNF- α and IL-1 β , and trigger neutrophil senescence and lipid peroxidation with excess reactive oxygen species, all of which promote osteoclast formation and suppress bone growth. In adaptive immunity, hyperlipidemia changes T-cell metabolism, weakens Treg function, and drives Th17 differentiation; this Th17/Treg imbalance boosts osteoclasts via RANKL, IL-17, and related pathways. Meanwhile, in inflammation, B cells switch from producing OPG to releasing RANKL and G-CSF, while Breg-derived IL-10, IL-35, and TGF- β 1 protect bone. The review also highlights how M1 macrophages and Th17 cells work together to worsen bone damage. Understanding these immune mechanisms could lead to new treatments for metabolic bone diseases. Despite these advances, the translation of these preclinical findings into clinical practice remains a challenge that warrants further investigation.

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Cite This Study

Zhou et al. (2026) studied this question.

synapsesocial.com/papers/69b4fac6b39f7826a300b637https://doi.org/10.3389/fimmu.2026.1774535
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