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February 16, 2026Frontiers in Immunology1 citationsOpen Access

Bitter gourd peptides (BG) alleviate lupus progression in mice through regulation of miR-146a/BRD4 axis in macrophages

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YWYu WuSecond Affiliated Hospital of Inner Mongolia Medical UniversityWHWenyan HanSecond Affiliated Hospital of Inner Mongolia Medical UniversityXLXian LiXihua University

Key Points

  • This study investigates the effect of bitter gourd peptides on lupus progression and its underlying mechanism in macrophages.
  • Evaluated the therapeutic effect of bitter gourd peptides in lupus-prone MRL/lpr mice.
  • Used LPS-primed THP-1-derived macrophage model to assess treatment effects.
  • Analyzed macrophage polarization and autophagy via flow cytometry, Western blot, and immunofluorescence.
  • Examined the miR-146a/BRD4 axis using qPCR and dual-luciferase reporter assays.
  • BG treatment reduced lupus symptoms including renal pathology and inflammation.
  • BG shifted macrophage phenotype from M1-like to M2-like in mice tissues.
  • Enhanced autophagy activity was observed following BG treatment.
  • In vitro, BG inhibited M1-like polarization and increased M2-like characteristics.

Abstract

Bitter gourd peptides (BG) possess anti-inflammatory properties. Macrophages play a pivotal role in systemic lupus erythematosus (SLE). This study aimed to evaluate the therapeutic effect of BG in lupus-prone mice and to investigate its mechanism of action via macrophage modulation. MRL/lpr mice were treated with BG, and disease indicators were assessed. In vitro , an LPS-primed, THP-1-derived macrophage model was established and treated with BG. Macrophage polarization and autophagy were analyzed by flow cytometry, Western blot, and immunofluorescence. The role of the miR-146a/BRD4 axis was examined using qPCR, dual-luciferase reporter assay, and gain/loss-of-function approaches. BG treatment alleviated lupus symptoms in mice, including renal pathology, autoantibody production, and inflammation. In tissues, BG promoted a shift in macrophage phenotype from M1- to M2-like and enhanced autophagic activity. In vitro , BG inhibited M1-like polarization, promoted an M2-like phenotype, and enhanced autophagic flux. Mechanistically, BG upregulated miR-146a, which targeted and inhibited BRD4. Both miR-146a inhibition and BRD4 overexpression reversed the cellular effects of BG on polarization and autophagy. BG mitigates lupus progression in mice, and its effects are linked to the modulation of macrophage phenotype and autophagic activity, a process associated with the miR-146a/BRD4 axis. These findings highlight a potential therapeutic avenue for SLE.

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Cite This Study

Wu et al. (2026) studied this question.

synapsesocial.com/papers/6992b4779b75e639e9b09795https://doi.org/10.3389/fimmu.2026.1666212
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