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Published on: May 30, 2020
The Role of MIF on Eosinophil Biology and Eosinophilic Inflammation
Marcelo T Bozza1, Leticia Lintomen2, Jamil Z Kitoko2,3
1Laboratório de Inflamação e Imunidade, Departamento de Imunologia, Instituto de Microbiologia, Universidade Federal do Rio de Janeiro, Rio de Janeiro, RJ, Brazil. mbozza@micro.ufrj.br.
Abstract:
Macrophage migration inhibitory factor (MIF) is an inflammatory cytokine that participates in innate and adaptive immune responses. MIF contributes to the resistance against infection agents, but also to the cellular and tissue damage in infectious, autoimmune, and allergic diseases. In the past years, several studies demonstrated a critical role for MIF in the pathogenesis of type-2-mediated inflammation, including allergy and helminth infection. Atopic patients have increased MIF amounts in affected tissues, mainly produced by immune cells such as macrophages, Th2 cells, and eosinophils. Increased MIF mRNA and protein are found in activated Th2 cells, while eosinophils stock pre-formed MIF protein and secrete high amounts of MIF upon stimulation. In mouse models of allergic asthma, the lack of MIF causes an almost complete abrogation of the cardinal signs of the disease including mucus secretion, eosinophilic inflammation, and airway hyper-responsiveness. Additionally, blocking the expression of MIF in animal models leads to significant reduction of pathological signs of eosinophilic inflammation such as rhinitis, atopic dermatitis, eosinophilic esophagitis and helminth infection. A number of studies indicate that MIF is important in the effector phase of type-2 immune responses, while its contribution to Th2 differentiation and IgE production is not consensual. MIF has been found to intervene in different aspects of eosinophil physiology including differentiation, survival, activation, and migration. CD4+ T cells and eosinophils express CD74 and CXCR4, receptors able to signal upon MIF binding. Blockage of these receptors with neutralizing antibodies or small molecule antagonists also succeeds in reducing the signals of inflammation in experimental allergic models. Together, these studies demonstrate an important contribution of MIF on eosinophil biology and in the pathogenesis of allergic diseases and helminth infection.
Insights
Macrophage migration inhibitory factor (MIF) drives type-2 inflammation and allergic diseases by impacting eosinophil biology. Blocking MIF or its receptors reduces allergic inflammation and infection severity.
Area of Science:
- Immunology
- Allergy Research
Background:
- Macrophage migration inhibitory factor (MIF) is a key inflammatory cytokine in immune responses.
- MIF plays a dual role, aiding infection resistance while contributing to tissue damage in various diseases.
- Its involvement in type-2 inflammation, including allergies and helminth infections, is increasingly recognized.
Purpose of the Study:
- To elucidate the critical role of MIF in the pathogenesis of type-2 mediated inflammatory conditions.
- To investigate MIF's specific contributions to allergic diseases and helminth infections.
- To explore MIF's impact on eosinophil physiology and its receptor-mediated signaling.
Main Methods:
- Analysis of MIF levels in atopic patients and immune cells (macrophages, Th2 cells, eosinophils).
- Utilizing mouse models of allergic asthma and other inflammatory conditions to assess the effects of MIF deficiency or blockade.
- Investigating MIF's interaction with its receptors, CD74 and CXCR4, on T cells and eosinophils.
Main Results:
- MIF is elevated in affected tissues of atopic patients, primarily produced by immune cells.
- MIF deficiency in mouse models abrogated key allergic asthma symptoms like mucus secretion and eosinophilic inflammation.
- Blocking MIF or its receptors (CD74, CXCR4) significantly reduced inflammation in experimental allergic models.
Conclusions:
- MIF is crucial for eosinophil biology and the pathogenesis of allergic diseases and helminth infections.
- MIF significantly contributes to the effector phase of type-2 immune responses.
- Targeting MIF or its signaling pathways offers potential therapeutic strategies for allergic conditions.
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