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February 9, 2026Cells0 citationsOpen Access

Fatty Acid Composition, at Equivalent Lipid Exposure, Dictates Human Macrophage Polarization via PPARγ Signaling

HAHalemah AlSaeedHAHesah AlmusallamSMShayndel Menezes

Key Points

  • The aim is to determine how fatty acid composition affects human macrophage polarization, independent of fat content.
  • Compared two mixtures of fatty acids with identical total content in macrophages
  • Assessed pro-inflammatory and anti-inflammatory polarization markers
  • Conducted mechanistic studies in THP-1-derived macrophages
  • Performed pharmacologic modulation to evaluate PPARγ's role
  • Palmitate-enriched mixture increased pro-inflammatory markers in macrophages
  • Unsaturated fat-dominant mixture increased anti-inflammatory markers
  • PPARγ signaling was activated by palmitate, while unsaturated fats activated PPARα
  • Pharmacologic agents affected macrophage polarization depending on fatty acid mixture

Abstract

Dietary fats are consumed as mixtures, yet it remains unclear whether fatty acid composition, independent of fat content, dictates human macrophage polarization. We compared two defined mixtures containing identical fatty acids (palmitic, oleic, and linoleic acids) in different ratios: a palmitate-enriched mixture (4:3:3) and an unsaturated fat-dominant mixture (2:4:4). In primary human monocyte-derived macrophages, palmitate enrichment increased CD14+CD11b+HLA-DR+ pro-inflammatory polarization, whereas the unsaturated fat-dominant mixture increased CD14+CD11b+CD163+ anti-inflammatory polarization. Mechanistic studies in THP-1-derived macrophages recapitulated these phenotype shifts and identified a reciprocal nuclear-receptor program: palmitate enrichment induced peroxisome proliferator-activated receptor gamma (PPARγ), together with ER-stress mediators EIF2AK3 and DDIT3, while the unsaturated fat-dominant mixture preferentially induced PPARα and IRF4. Pharmacologic modulation demonstrated functional dependence on PPARγ: GW9662 attenuated palmitate-driven M1-like polarization, whereas rosiglitazone disrupted the protective program under unsaturated fat-dominant conditions. These findings show that fatty acid composition, at equivalent total lipid concentration, is a dominant determinant of human macrophage inflammatory fate and highlight PPARγ as a context-dependent lipid sensor.

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Cite This Study

AlSaeed et al. (2026) studied this question.

synapsesocial.com/papers/698979a6f0ec2af6756e76b4https://doi.org/10.3390/cells15030308
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