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Macrophage Migration Inhibitory Factor (MIF)-Based Therapeutic Concepts in Atherosclerosis and Inflammation

  • Dzmitry Sinitski
  • , Christos Kontos
  • , Christine Krammer
  • , Yaw Asare
  • , Aphrodite Kapurniotu
  • , Jürgen Bernhagen
  • Ludwig-Maximilians-Universität München
  • Technical University of Munich
  • Munich Heart Alliance
  • Munich Cluster for Systems Neurology (SyNergy)

Research output: Contribution to journalArticlepeer-review

85 Scopus citations

Abstract

Chemokines orchestrate leukocyte recruitment in atherosclerosis and their blockade is a promising anti-atherosclerotic strategy, but few chemokine-based approaches have advanced into clinical trials, in part owing to the complexity and redundancy of the chemokine network. Macrophage migration inhibitory factor (MIF) is a pivotal mediator of atherosclerotic lesion formation. It has been characterized as an inflammatory cytokine and atypical chemokine that promotes atherogenic leukocyte recruitment and lesional inflammation through interactions with the chemokine receptors CXCR2 and CXCR4, but also exhibits phase-specific CD74-mediated cardioprotective activity. The unique structural properties of MIF and its homologue MIF-2/D-DT offer intriguing therapeutic opportunities including small molecule-, antibody- and peptide-based approaches that may hold promise as inhibitors of atherosclerosis, while sparing tissue-protective classical chemokine pathways. In this review, we summarize the pros and cons of anti-MIF protein strategies and discuss their molecular characteristics and receptor specificities with a focus on cardiovascular disease.

Original languageEnglish
Pages (from-to)553-566
Number of pages14
JournalThrombosis and Haemostasis
Volume119
Issue number4
DOIs
StatePublished - 2019

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

Keywords

  • MIF
  • antibody
  • atypical chemokine
  • chemokine receptor
  • peptide
  • small molecule drug compound

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