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Updated: Aug 9, 2025

Osteoclast Derivation from Mouse Bone Marrow
Published on: November 6, 2014
Agonistic and antagonistic targeting of immune checkpoint molecules differentially regulate osteoclastogenesis
Victoria C Brom1, Andreas C Strauss1, Alexander Sieberath2
1Clinic for Orthopedics and Trauma Surgery, University Hospital Bonn, Bonn, Germany.
Introduction:
Immune checkpoint inhibitors are used in the treatment of various cancers and have been extensively researched with regard to inflammatory and autoimmune diseases. However, this revolutionary therapeutic strategy often provokes critical auto-inflammatory adverse events, such as inflammatory reactions affecting the cardiovascular, gastrointestinal, nervous, and skeletal systems. Because the function of these immunomodulatory co-receptors is highly cell-type specific and the role of macrophages as osteoclast precursors is widely published, we aimed to analyze the effect of immune checkpoint inhibitors on these bone-resorbing cells.
Methods:
We established an in vitro model of osteoclastogenesis using human peripheral blood mononuclear cells, to which various immune checkpoints and corresponding antagonistic antibodies were administered. Formation of osteoclasts was quantified and cell morphology was analyzed via immunofluorescence staining, cell size measurements, and calculation of cell numbers in a multitude of samples.
Results:
These methodical approaches for osteoclast research achieved objective, comparable, and reproducible results despite the great heterogeneity in the form, size, and number of osteoclasts. In addition to the standardization of experimental analyses involving osteoclasts, our study has revealed the substantial effects of agonistic and antagonistic checkpoint modulation on osteoclastogenesis, confirming the importance of immune checkpoints in bone homeostasis.
Discussion:
Our work will enable more robust and reproducible investigations into the use of immune checkpoint inhibitors in conditions with diminished bone density such as osteoporosis, aseptic loosening of endoprostheses, cancer, as well as the side effects of cancer therapy, and might even pave the way for novel individualized diagnostic and therapeutic strategies.
Insights
Immune checkpoint inhibitors impact osteoclastogenesis, the process of bone resorption. This research clarifies their role in bone homeostasis and potential therapeutic applications for bone density loss.
Area of Science:
- Immunology
- Oncology
- Bone Biology
Background:
- Immune checkpoint inhibitors (ICIs) treat cancer but can cause autoimmune adverse events.
- These adverse events affect multiple organ systems, including the skeletal system.
- Macrophages are known osteoclast precursors, making them a target for ICI-related bone effects.
Purpose of the Study:
- To investigate the effect of immune checkpoint inhibitors on osteoclastogenesis.
- To analyze how ICI modulation impacts bone-resorbing cells.
Main Methods:
- Established an in vitro model of osteoclastogenesis using human peripheral blood mononuclear cells.
- Administered various immune checkpoints and antagonistic antibodies.
- Quantified osteoclast formation and analyzed cell morphology via immunofluorescence staining, cell size, and cell counting.
Main Results:
- Developed standardized, reproducible methods for analyzing osteoclast heterogeneity.
- Demonstrated substantial effects of checkpoint modulation (agonistic and antagonistic) on osteoclastogenesis.
- Confirmed the critical role of immune checkpoints in maintaining bone homeostasis.
Conclusions:
- Findings highlight the importance of immune checkpoints in bone health and disease.
- This research may inform treatments for conditions with diminished bone density, such as osteoporosis and cancer therapy side effects.
- Paves the way for novel diagnostic and therapeutic strategies for bone-related conditions.
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