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Updated: Jan 4, 2026

Bone Marrow-derived Macrophage Production
Published on: November 22, 2013
Targeting Macrophages: Friends or Foes in Disease?
Juan A Ardura1, Gorjana Rackov2,3, Elena Izquierdo4
1Department of Basic Medical Sciences, Faculty of Medicine, San Pablo CEU University, Madrid, Spain.
Abstract:
Macrophages occupy a prominent position during immune responses. They are considered the final effectors of any given immune response since they can be activated by a wide range of surface ligands and cytokines to acquire a continuum of functional states. Macrophages are involved in tissue homeostasis and in the promotion or resolution of inflammatory responses, causing tissue damage or helping in tissue repair. Knowledge in macrophage polarization has significantly increased in the last decade. Biomarkers, functions, and metabolic states associated with macrophage polarization status have been defined both in murine and human models. Moreover, a large body of evidence demonstrated that macrophage status is a dynamic process that can be modified. Macrophages orchestrate virtually all major diseases-sepsis, infection, chronic inflammatory diseases (rheumatoid arthritis), neurodegenerative disease, and cancer-and thus they represent attractive therapeutic targets. In fact, the possibility to "reprogram" macrophage status is considered as a promising strategy for designing novel therapies. Here, we will review the role of different tissue macrophage populations in the instauration and progression of inflammatory and non-inflammatory pathologies, as exemplified by rheumatoid arthritis, osteoporosis, glioblastoma, and tumor metastasis. We will analyze: 1) the potential as therapeutic targets of recently described macrophage populations, such as osteomacs, reported to play an important role in bone formation and homeostasis or metastasis-associated macrophages (MAMs), key players in the generation of premetastatic niche; 2) the current and potential future approaches to target monocytes/macrophages and their inflammation-causing products in rheumatoid arthritis; and 3) the development of novel intervention strategies using oncolytic viruses, immunomodulatory agents, and checkpoint inhibitors aiming to boost M1-associated anti-tumor immunity. In this review, we will focus on the potential of macrophages as therapeutic targets and discuss their involvement in state-of-the-art strategies to modulate prevalent pathologies of aging societies.
Insights
Macrophages are key immune cells involved in various diseases and tissue repair. Reprogramming macrophage status offers promising therapeutic strategies for conditions like rheumatoid arthritis, cancer, and aging-related pathologies.
Area of Science:
- Immunology
- Cell Biology
- Pathology
Background:
- Macrophages are crucial immune effectors with diverse functional states.
- Their polarization is dynamic and linked to homeostasis, inflammation, and tissue repair.
- Macrophages play significant roles in major diseases, making them therapeutic targets.
Purpose of the Study:
- To review the role of tissue macrophage populations in inflammatory and non-inflammatory diseases.
- To analyze novel macrophage populations (osteomacs, MAMs) as therapeutic targets.
- To discuss therapeutic strategies targeting macrophages in rheumatoid arthritis and cancer.
Main Methods:
- Literature review of macrophage polarization and function.
- Analysis of macrophage roles in rheumatoid arthritis, osteoporosis, glioblastoma, and metastasis.
- Examination of therapeutic approaches including oncolytic viruses and checkpoint inhibitors.
Main Results:
- Specific macrophage populations like osteomacs and metastasis-associated macrophages (MAMs) are identified as key players in disease.
- Targeting macrophages and their products shows potential for treating rheumatoid arthritis.
- Strategies involving oncolytic viruses and immunomodulatory agents aim to enhance anti-tumor immunity.
Conclusions:
- Macrophages are versatile therapeutic targets for a range of diseases.
- Reprogramming macrophage status is a promising strategy for novel therapies.
- Modulating macrophage function is critical for treating prevalent pathologies in aging societies.
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