Identification of a fatty acid binding protein4-UCP2 axis regulating microglial mediated neuroinflammation

Cayla M Duffy1, Hongliang Xu2, Joshua P Nixon1

  • 1Minneapolis Veterans Affairs Health Care System, Research 151, One Veterans Dr, Minneapolis, MN 55417, USA; Department of Food Science and Nutrition, University of Minnesota, 1334 Eckles Ave, St. Paul, MN 55108, USA.

Insights

Researchers discovered a new pathway involving Fatty Acid Binding Protein 4 (FABP4) and Uncoupling Protein 2 (UCP2) that regulates inflammation in brain immune cells, potentially offering new targets for obesity and metabolic disorders.

Area of Science:

  • Neuroimmunology
  • Metabolic Neuroscience
  • Cellular Biology

Background:

  • Hypothalamic inflammation, driven by dietary saturated fats activating microglia via NFκB, contributes to obesity and metabolic dysfunction.
  • Fatty acid binding proteins (FABPs) are crucial lipid chaperones, with FABP4 implicated in peripheral macrophage inflammation via a UCP2-redox mechanism.
  • The role of FABP4 and a potential FABP4-UCP2 axis in regulating microglial inflammatory responses remains largely uncharacterized.

Purpose of the Study:

  • To investigate the expression of FABP4 in microglial cells.
  • To determine if FABP4 inhibition upregulates UCP2 and attenuates palmitic acid-induced pro-inflammatory responses in microglia.
  • To elucidate the role of a FABP4-UCP2 axis in obesity-induced neuroinflammation.

Main Methods:

  • Gene expression analysis of FABP4 in mouse brain tissue and BV2 microglia.
  • Treatment of microglial cells with an FABP inhibitor (HTS01037) and palmitic acid (PA).
  • Analysis of UCP2, arginase, iNOS, TNF-α, and Iba1 expression in wild-type and FABP4/UCP2 knockout mice and microglia.

Main Results:

  • FABP4 was confirmed in mouse brain tissue and BV2 microglia.
  • FABP4 inhibition increased UCP2 and arginase expression and attenuated iNOS expression in microglia.
  • FABP4-deficient mice exhibited increased UCP2 and reduced neuroinflammatory markers (iNOS, TNF-α, Iba1), an effect dependent on UCP2.

Conclusions:

  • Microglial cells express FABP4, and its inhibition modulates inflammatory pathways.
  • A novel FABP4-UCP2 axis was identified, demonstrating its pivotal role in regulating microglial inflammatory capacity.
  • This axis represents a potential therapeutic target for mitigating obesity-induced neuroinflammation and metabolic dysregulation.

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