American Society of Hirudotherapy

Macrophage migration inhibitory factor in rheumatoid arthritis

Review published in Frontiers in bioscience : a journal and virtual library (2005)

Last Updated: June 18, 2026Reviewed by: ASH Editorial Board
Research article — evidence reviewArticle reference
Evidence: Narrative reviewClinical TrialsMorand EF et al. · Frontiers in bioscience : a journal and virtual library, 2005

Abstract

Rheumatoid arthritis is characterised by the interaction of multiple mediators, among the most important of which are cytokines. In recent years, extensive data demonstrates a pivotal role for one cytokine, macrophage migration inhibitory factor (MIF), in fundamental events in innate and adaptive immunity. MIF has now been demonstrated to be involved in the pathogenesis of many diseases, but in the case of RA the evidence for a role of MIF is very strong. MIF is abundantly expressed in the serum of RA patients, and in RA synovial tissue where it correlates with disease activity. MIF induces synoviocyte expression of key proinflammatory genes including TNF, IL-1, IL-6, IL-8, cPLA2, COX2 and MMPs. MIF also regulates the function of endothelial cells and B cells. Moreover, MIF is implicated in the control of synoviocyte proliferation and apoptosis via direct effects on the expression of the tumor suppressor protein p53. In multiple rat and mouse models of RA, anti-MIF antibodies or genetic MIF deficiency are associated with significant inhibition of disease. MIF -/- mice further demonstrate increases in synovial apoptosis. That the human Mif gene is encoded by different functional alleles in subjects with inflammatory disease also provides evidence for the role of MIF in RA. The mechanism of action of MIF is becoming better understood. MIF appears to interact with cell surface CD74, with consequent activation of MAP kinases but possibly not NFkappaB intracellular signal transduction. This apparent selectivity may be implicated in the ability of MIF to antagonise the effects of glucocorticoids. As MIF expression is induced by glucocorticoids, inhibition of its antagonistic effects may permit enhanced therapeutic effect of glucocorticoids, or "steroid sparing". To date there are no clinical trials of MIF antagonism in any disease, but exploitation of antibody, soluble receptor, or small molecule approaches enabled by the unique crystal structure of MIF, may soon lead to the ability to test in the clinic the importance of this cytokine in human RA.

Abstract sourced from PubMed (NCBI) for the cited record. See the original publication for the authoritative version.

Publication typeJournal ArticleResearch Support, Non-U.S. Gov'tReview
Indexed MeSH termsAllelesAnimalsAntigens, Differentiation, B-LymphocyteApoptosisArthritis, RheumatoidGene Expression RegulationGlucocorticoidsHistocompatibility Antigens Class IIHumansInflammationMacrophage Migration-Inhibitory FactorsPolymorphism, Genetic

Summary

Rheumatoid arthritis is characterised by the interaction of multiple mediators, among the most important of which are cytokines.

Why This Matters for Hirudotherapy

This review summarizes the role of macrophage migration inhibitory factor (MIF) in rheumatoid arthritis pathogenesis, including its induction of proinflammatory genes (TNF, IL-1, IL-6, IL-8, COX2, MMPs), regulation of endothelial and B-cell function, and antagonism of glucocorticoid effects. The authors discuss evidence from animal models showing that anti-MIF antibodies or genetic MIF deficiency reduce disease severity, and note the potential for MIF-targeted therapies. While the inflammatory mediators discussed are of broad interest, the abstract contains no reference to leeches, hirudotherapy, or leech-derived substances. Consequently, this article has no defensible relevance to ASH's research domain.

Citation

Macrophage migration inhibitory factor in rheumatoid arthritis

Morand EF et al. · Frontiers in bioscience : a journal and virtual library, 2005

Added to ASH library: May 27, 2026 · Site last updated: June 18, 2026

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