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Microglia as a Surrogate Biosensor to Determine Nanoparticle Neurotoxicity
Published on: October 25, 2016
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.
Abstract:
Hypothalamic inflammation contributes to metabolic dysregulation and the onset of obesity. Dietary saturated fats activate microglia via a nuclear factor-kappa B (NFκB) mediated pathway to release pro-inflammatory cytokines resulting in dysfunction or death of surrounding neurons. Fatty acid binding proteins (FABPs) are lipid chaperones regulating metabolic and inflammatory pathways in response to fatty acids. Loss of FABP4 in peripheral macrophages via either molecular or pharmacologic mechanisms results in reduced obesity-induced inflammation via a UCP2-redox based mechanism. Despite the widespread appreciation for the role of FABP4 in mediating peripheral inflammation, the expression of FABP4 and a potential FABP4-UCP2 axis regulating microglial inflammatory capacity is largely uncharacterized. To that end, we hypothesized that microglial cells express FABP4 and that inhibition would upregulate UCP2 and attenuate palmitic acid (PA)-induced pro-inflammatory response. Gene expression confirmed expression of FABP4 in brain tissue lysate from C57Bl/6J mice and BV2 microglia. Treatment of microglial cells with an FABP inhibitor (HTS01037) increased expression of Ucp2 and arginase in the presence or absence of PA. Moreover, cells exposed to HTS01037 exhibited attenuated expression of inducible nitric oxide synthase (iNOS) compared to PA alone indicating reduced NFκB signaling. Hypothalamic tissue from mice lacking FABP4 exhibit increased UCP2 expression and reduced iNOS, tumor necrosis factor-alpha (TNF-α), and ionized calcium-binding adapter molecule 1 (Iba1; microglial activation marker) expression compared to wild type mice. Further, this effect is negated in microglia lacking UCP2, indicating the FABP4-UCP2 axis is pivotal in obesity induced neuroinflammation. To our knowledge, this is the first report demonstrating a FABP4-UCP2 axis with the potential to modulate the microglial inflammatory response.
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.

