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June 4, 2026Journal of Clinical Medicine0 citationsOpen Access

Vitamin D Receptor–Macrophage–IL-23 Axis in Inflammatory Bowel Disease: Pathogenic Mechanisms and Therapeutic Hope

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AGAlexandra GrigorașLGLarisa GhemișAGAncuța Goriuc

Key Points

  • The review aims to summarize the mechanisms by which vitamin D and macrophages influence IL-23 production in inflammatory bowel disease.
  • Literature review of current evidence regarding IL-23 and vitamin D receptor signaling in IBD.
  • Analysis of macrophage function and IL-23 production in the context of vitamin D deficiency.
  • Macrophage-derived IL-23 is central to IBD pathogenesis.
  • Vitamin D receptor signaling reduces pro-inflammatory macrophage activity and IL-23 production.
  • Targeting the VDR-macrophage-IL-23 axis may offer new therapeutic strategies for IBD.

Abstract

Inflammatory bowel disease (IBD), including Crohn’s disease and ulcerative colitis, is characterized by chronic intestinal inflammation driven by dysregulated immune responses in gut microbiota. Interleukin (IL)-23, a member of IL-12 cytokine family, has emerged as a key immune mediator, being produced mainly by macrophages from the intestinal mucosa. In recent years, vitamin D has become a pivotal immunomodulatory factor in IBD, vitamin D deficiency being commonly associated with this pathology. The immune effects of vitamin D are mediated through vitamin D receptor (VDR), widely expressed in macrophages and other immune cells. VDR signaling regulates pro-inflammatory macrophage activity and limits M1 polarization, therefore reducing IL-23 production and limiting Th17 driven inflammatory response. This review summarizes current evidence on the role of macrophage-derived IL-23 in IBD pathogenesis and highlights the modulatory effects of vitamin D/VDR signaling. In addition, it addresses the therapeutic relevance of targeting the VDR–macrophage–IL-23 axis in IBD.

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Grigoraș et al. (2026) studied this question.

synapsesocial.com/papers/6a2115f6d499ed480b16ef77https://doi.org/10.3390/jcm15114296
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