The anti-inflammatory and bioregulatory effects of habitual exercise in high-fat diet-induced obesity involve crown-like structures and MCP-1 in white adipose tissue.

Authors

  • Isabel Galvez Inst Univ Invest Biosanit Extremadura INUBE, Immunophyisiol Res Grp, Badajoz 06071, Spain Author
  • Leticia Martin-Cordero Univ Extremadura, Fac Med & Hlth Sci, Nursing Dept, Immunophysiol Res Grp, Badajoz 06071, Spain Author
  • Gerry Graham Univ Extremadura, Fac Sci, Physiol Dept, Immunophysiol Res Grp, Badajoz 06071, Spain Author
  • Gerry Graham Univ Extremadura, Univ Ctr Plasencia, Nursing Dept, Immunophysiol Res Grp, Plasencia 10600, Spain Author
  • Gerry Graham Univ Glasgow, Coll Med Vet & Life Sci, Glasgow G12 8TT, Scotland Author
  • Javier Francisco-Morcillo Univ Extremadura, Fac Sci, Anat Cell Biol & Zool Dept, Badajoz 06071, Spain Author
  • Eduardo Ortega Univ Extremadura, Inst Univ Invest Biosanit Extremadura, Badajoz 06071, Spain Author

DOI:

https://doi.org/10.22029/eir.2023.1756

Keywords:

MACROPHAGE INFILTRATION, LOCAL PROLIFERATION, INSULIN-RESISTANCE, ADIPOCYTE DEATH, CRUCIAL ROLE, INFLAMMATION, CONTRIBUTES, ACTIVATION, PHENOTYPE, PLAYS

Abstract

"Macrophage accumulation in the adipose tissue and changes in their inflammatory phenotype is a hallmark of obesity-induced inflammation, notably forming inflammatory structures known as ""crown-like structures (CLS)"". Exercise can be a key strategy to improve inflammation-related complications, but it is crucial to consider that, although exercise generally exerts systemic and local anti-inflammatory effects, this depends on the basal inflammatory status and exercise modality. In this context, the ""bioregulatory effect of exercise"" implies to achieve the reduction or prevention of an excessive inflammatory response and also the preservation or stimulation of the innate response. In the present work, our aim was to evaluate the effect of regular exercise on adipose tissue inflammation in high-fat diet-induced obesity in mice, as reflected by macrophage infiltration and phenotype, and CLS formation, together with a potential role for the chemokine MCP-1 in this process. Results showed that obesity is associated with greater MCP-1 expression (p<0.05), macrophage accumulation (p<0.05), and CLS presence (p<0.001). Regular exercise reduced macrophage accumulation (p<0.05), MCP-1 expression (p<0.01), and CLS presence (p<0.05) in obese mice; while it increased macrophage and CLS presence (p<0.01), MCP-1 expression (p<0.05), and M2 polarization (p<0.05) in lean mice. MCP-1 was associated with the proliferation of CLS, showing the first image demonstrating a potential role of this chemokine in the development of these structures. Altogether, these results confirm, for the first time, the ""bioregulatory effect of exercise"" in the adipose tissue: reducing inflammation in individuals with an elevated inflammatory set point, but stimulating this response of the immune system in healthy individuals."

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Published

2026-07-15

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