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Smac-mimetics reduce numbers and viability of human osteoclasts
Ingrid Nyhus Moen1,2, Marita Westhrin1, Erling Håland1
1CEMIR Centre of Molecular Inflammation Research, IKOM, NTNU, Trondheim, Norway.
Abstract:
Elevated activity of bone-degrading osteoclasts (OC) contributes to pathological bone degradation in diseases such as multiple myeloma. Several proinflammatory cytokines, including TNF, contribute to osteoclastogenesis. The receptor-interacting protein kinase 1 (RIPK1) regulates inflammation and cell death. It is recruited to the TNF-receptor complex, where it is ubiquitinated, and activates transcription factor NF-κB and mitogen-activated protein kinases (MAPK). Smac-mimetics (SM) is a group of drugs that block RIPK1 ubiquitination and shifts RIPK1 to activation of apoptosis or necroptosis. In this manuscript, we show that the two SM birinapant and LCL-161 reduced the number and viability of primary human OC, and induced TNF-dependent cell death in OC precursors (pre-OC). Birinapant was more cytotoxic than LCL-161 and induced predominantly apoptosis and to some degree necroptosis. Both inhibitors restrained osteoclastogenesis induced by myeloma patient bone-marrow aspirates. SM has gained attention as novel treatment strategies both for cancer and chronic inflammatory pathologies, but limited information has been available on interactions with primary human immune cells. As LCL-161 is in phase 2 clinical studies for multiple myeloma, we propose that SM might possess additional benefits in reducing bone degradation in myeloma patients. Taken together, we show that SM reduces human osteoclastogenesis, and that these compounds may represent promising drug candidates for pathological bone degradation.
Insights
Smac-mimetics (SM) reduce the number and viability of human osteoclasts (OC), inhibiting bone degradation. These compounds may offer new therapeutic strategies for multiple myeloma and other bone diseases.
Area of Science:
- Immunology
- Pharmacology
- Cell Biology
Background:
- Osteoclasts (OC) drive pathological bone loss in diseases like multiple myeloma.
- Pro-inflammatory cytokines, such as TNF, promote osteoclastogenesis.
- Receptor-interacting protein kinase 1 (RIPK1) regulates inflammation and cell death pathways.
Purpose of the Study:
- To investigate the effects of Smac-mimetics (SM) on primary human osteoclasts and osteoclast precursors.
- To evaluate the potential of SM as a therapeutic strategy for pathological bone degradation.
Main Methods:
- Treatment of primary human OC and OC precursors with SM (birinapant and LCL-161).
- Assessment of OC number, viability, and cell death.
- Analysis of TNF-dependent cell death induction.
- Evaluation of SM's effect on osteoclastogenesis in bone-marrow aspirates from multiple myeloma patients.
Main Results:
- Birinapant and LCL-161 reduced the number and viability of primary human OC.
- SM induced TNF-dependent cell death in OC precursors (pre-OC).
- Birinapant exhibited higher cytotoxicity than LCL-161, inducing apoptosis and necroptosis.
- Both SM inhibitors suppressed osteoclastogenesis stimulated by myeloma patient samples.
Conclusions:
- Smac-mimetics effectively reduce human osteoclastogenesis and viability.
- SM compounds demonstrate potential as therapeutic agents for pathological bone degradation.
- SM may offer additional benefits in mitigating bone loss associated with multiple myeloma.
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