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Investigation of Macrophage Polarization Using Bone Marrow Derived Macrophages
Published on: June 23, 2013
MicroRNA: Dynamic Regulators of Macrophage Polarization and Plasticity
Jezrom Bokcaerin Self-Fordham1, Afsar Raza Naqvi1, Juhi Raju Uttamani1
1Department of Periodontics, University of Illinois at Chicago, Chicago, IL, United States.
Abstract:
The ability of a healthy immune system to clear the plethora of antigens it encounters incessantly relies on the enormous plasticity displayed by the comprising cell types. Macrophages (MΦs) are crucial member of the mononuclear phagocyte system (MPS) that constantly patrol the peripheral tissues and are actively recruited to the sites of injury and infection. In tissues, infiltrating monocytes replenish MΦ. Under the guidance of the local micro-milieu, MΦ can be activated to acquire specialized functional phenotypes. Similar to T cells, functional polarization of macrophage phenotype viz., inflammatory (M1) and reparative (M2) is proposed. Equipped with diverse toll-like receptors (TLRs), these cells of the innate arm of immunity recognize and phagocytize antigens and secrete cytokines that activate the adaptive arm of the immune system and perform key roles in wound repair. Dysregulation of MΦ plasticity has been associated with various diseases and infection. MicroRNAs (miRNAs) have emerged as critical regulators of transcriptome output. Their importance in maintaining health, and their contribution toward disease, encompasses virtually all aspects of human biology. Our understanding of miRNA-mediated regulation of MΦ plasticity and polarization can be utilized to modulate functional phenotypes to counter their role in the pathogenesis of numerous disease, including cancer, autoimmunity, periodontitis, etc. Here, we provide an overview of current knowledge regarding the role of miRNA in shaping MΦ polarization and plasticity through targeting of various pathways and genes. Identification of miRNA biomarkers of diagnostic/prognostic value and their therapeutic potential by delivery of miRNA mimics or inhibitors to dynamically alter gene expression profiles in vivo is highlighted.
Insights
MicroRNAs (miRNAs) are key regulators of macrophage plasticity and polarization. Understanding miRNA roles offers therapeutic strategies for diseases linked to macrophage dysfunction.
Area of Science:
- Immunology
- Molecular Biology
- Cell Biology
Background:
- Macrophages (MΦs) are crucial immune cells with remarkable plasticity, essential for clearing antigens and tissue repair.
- MΦs polarize into functional phenotypes, such as inflammatory (M1) and reparative (M2), influenced by the micro-milieu.
- Dysregulation of MΦ plasticity is implicated in various diseases and infections.
Purpose of the Study:
- To provide an overview of microRNA (miRNA)-mediated regulation of macrophage plasticity and polarization.
- To highlight the potential of targeting miRNAs for therapeutic interventions in diseases involving MΦ dysfunction.
Main Methods:
- Review of current knowledge on miRNA regulation of macrophage polarization pathways and genes.
- Discussion of miRNA biomarkers for diagnosis and prognosis.
- Exploration of therapeutic delivery of miRNA mimics or inhibitors.
Main Results:
- miRNAs critically regulate macrophage polarization and plasticity by targeting diverse pathways and genes.
- miRNAs play significant roles in maintaining immune homeostasis and contributing to disease pathogenesis.
- miRNA-based diagnostics and therapeutics hold promise for modulating MΦ function.
Conclusions:
- miRNA-mediated regulation of macrophage polarization is a vital area for understanding health and disease.
- Targeting miRNAs offers a promising avenue for developing novel therapeutic strategies against various diseases.
- Further research into miRNA biomarkers and delivery systems is warranted for clinical applications.
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