Diabetologia

Special metabolic changes in fat tissue immune cells in obesity increase inflammation

Updated

Abstract

Unique metabolic rewiring in obesity is characterized by increased and in .

  • Metabolic activation of adipose tissue macrophages (ATMs) in obesity is associated with heightened inflammatory cytokine release.
  • Increased glycolysis is identified as the main contributor to the proinflammatory traits of macrophages in obese adipose tissue.
  • Distinct metabolic changes in ATMs are not observed in peritoneal macrophages from obese versus lean mice.
  • Specific adipose tissue-derived factors induce metabolic activation in macrophages, independent of leptin or lactate.
  • Fatty acid oxidation, glycolysis, and glutaminolysis were found to play roles in cytokine production by ATMs in lean adipose tissue.
  • HIF-1α does not play a critical role in the proinflammatory activation of ATMs during early obesity.

Simplified

Key numbers

2.3×
Increase in
Glycolytic rate in from obese mice compared to lean mice.
4 of 5
Higher cytokine secretion
Cytokine levels in supernatants from isolated from obese vs lean mice.

Full Text

What this is

  • This research investigates the metabolic changes in () in obesity.
  • It explores how these changes contribute to inflammation and insulin resistance.
  • The study employs various techniques, including transcriptome analysis and metabolic flux measurements, to characterize from lean and obese mice.

Essence

  • Obesity induces unique metabolic activation in , characterized by increased and , which promotes inflammatory cytokine release.

Key takeaways

  • Obese exhibit distinct metabolic profiles compared to lean macrophages. These profiles include enhanced and , leading to increased cytokine secretion.
  • is the primary metabolic pathway driving cytokine release in from obese mice. Inhibition of significantly reduces cytokine production, indicating its central role in inflammation.
  • The study finds that metabolic activation of in obesity is independent of HIF-1α, a known regulator of , suggesting alternative pathways may govern macrophage function in this context.

Caveats

  • The findings are based on mouse models, which may not fully replicate human obesity and its associated metabolic conditions.
  • The study does not explore the long-term implications of metabolic activation in , leaving questions about chronic inflammation and insulin resistance.

Definitions

  • adipose tissue macrophages (ATMs): Macrophages located in adipose tissue that play a role in inflammation and metabolism.
  • glycolysis: A metabolic pathway that converts glucose into pyruvate, generating energy in the form of ATP.
  • oxidative phosphorylation: A metabolic process that uses oxygen to produce ATP through the electron transport chain in mitochondria.

Simplified

Funding

Competing interests

The authors declare that there is no duality of interest associated with this manuscript.
PubMed

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