Pathological Osteoclasts and Precursor Macrophages in Inflammatory Arthritis
Tetsuo Hasegawa1,2, Masaru Ishii1,3,4
1Department of Immunology and Cell Biology, Graduate School of Medicine and Frontier Biosciences, Osaka University, Osaka, Japan.
Abstract:
Macrophages comprise a variety of subsets with diverse biological functions, including inflammation, tissue repair, regeneration, and fibrosis. In the bone marrow, macrophages differentiate into multinucleated osteoclasts, which have a unique bone-destroying capacity and play key roles in physiological bone remodelling. In contrast, osteoclasts are also involved in inflammatory bone erosion in arthritis and it has been unclear whether the osteoclasts in different tissue settings arise from similar monocytoid precursors and share similar phenotypes. Rapid progresses in the sequencing technologies have provided many important insights regarding the heterogeneity of different types of osteoclasts. The application of single-cell RNA sequencing (scRNA-seq) to the osteoclast precursor-containing macrophages enabled to identify the specific subpopulation differentiating into pathological mature osteoclasts in joints. Furthermore, an intravital imaging technology using two-photon microscopy has succeeded in visualizing the real-time dynamics of immune cells in the synovial microenvironment. These technologies together contributed to characterize the unique macrophages in the inflamed synovium, termed "arthritis-associated osteoclastogenic macrophages (AtoMs)", causing the pathological bone destruction in inflammatory arthritis. Here, we review and discuss how novel technologies help to better understand the role of macrophages in inflammatory arthritis, especially focusing of osteoclastogenesis at the pannus-bone interface.
Insights
Novel technologies reveal specific macrophages, arthritis-associated osteoclastogenic macrophages (AtoMs), driving bone destruction in inflammatory arthritis. These findings enhance understanding of osteoclastogenesis at the pannus-bone interface.
Area of Science:
- Immunology
- Cell Biology
- Rheumatology
Background:
- Macrophages exhibit diverse functions, including roles in bone remodeling via osteoclasts.
- Osteoclasts contribute to both physiological bone remodeling and pathological bone erosion in arthritis.
- The precise origins and phenotypes of osteoclasts in different inflammatory settings remained unclear.
Purpose of the Study:
- To investigate the heterogeneity of osteoclast precursors in inflammatory arthritis.
- To identify specific macrophage subsets involved in pathological bone destruction.
- To characterize novel immune cell populations in the synovial microenvironment.
Main Methods:
- Single-cell RNA sequencing (scRNA-seq) of macrophages.
- Intravital imaging using two-photon microscopy.
- Analysis of immune cell dynamics in the synovial microenvironment.
Main Results:
- Identified a specific subpopulation of macrophages differentiating into pathological osteoclasts.
- Characterized unique macrophages in inflamed synovium, termed "arthritis-associated osteoclastogenic macrophages (AtoMs)".
- Visualized real-time dynamics of immune cells in the synovial microenvironment.
Conclusions:
- Novel technologies have elucidated the role of specific macrophages in inflammatory arthritis.
- Arthritis-associated osteoclastogenic macrophages (AtoMs) are key drivers of pathological bone destruction.
- Understanding osteoclastogenesis at the pannus-bone interface is crucial for therapeutic strategies.
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