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Updated: Mar 14, 2026

A Simple Pit Assay Protocol to Visualize and Quantify Osteoclastic Resorption In Vitro
Published on: June 16, 2022
Ablation of Y1 receptor impairs osteoclast bone-resorbing activity
Daniela M Sousa1,2, Francisco Conceição1,2,3, Diana I Silva2
1Instituto de Investigação e Inovação em Saúde (i3S), Universidade do Porto, NanoBiomaterials for targeted therapies Group, Rua Alfredo Allen 208, 4200-135 Porto, Portugal.
Abstract:
Y1 receptor (Y1R)-signalling pathway plays a pivotal role in the regulation of bone metabolism. The lack of Y1R-signalling stimulates bone mass accretion that has been mainly attributed to Y1R disruption from bone-forming cells. Still, the involvement of Y1R-signalling in the control of bone-resorbing cells remained to be explored. Therefore, in this study we assessed the role of Y1R deficiency in osteoclast formation and resorption activity. Here we demonstrate that Y1R germline deletion (Y1R(-/-)) led to increased formation of highly multinucleated (n > 8) osteoclasts and enhanced surface area, possibly due to monocyte chemoattractant protein-1 (MCP-1) overexpression regulated by RANKL-signalling. Interestingly, functional studies revealed that these giant Y1R(-/-) multinucleated cells produce poorly demineralized eroded pits, which were associated to reduce expression of osteoclast matrix degradation markers, such as tartrate-resistant acid phosphatase-5b (TRAcP5b), matrix metalloproteinase-9 (MMP-9) and cathepsin-K (CTSK). Tridimensional (3D) morphologic analyses of resorption pits, using an in-house developed quantitative computational tool (BonePit), showed that Y1R(-/-) resorption pits displayed a marked reduction in surface area, volume and depth. Together, these data demonstrates that the lack of Y1Rs stimulates the formation of larger multinucleated osteoclasts in vitro with reduced bone-resorbing activity, unveiling a novel therapeutic option for osteoclastic bone diseases based on Y1R-signalling ablation.
Insights
Mice lacking the Y1 receptor (Y1R) show larger osteoclasts with reduced bone resorption. This suggests Y1R signaling ablation could be a therapeutic strategy for bone diseases.
Area of Science:
- Bone Biology
- Cellular Metabolism
- Receptor Signaling
Background:
- Y1 receptor (Y1R) signaling is crucial for bone metabolism.
- Y1R disruption in bone-forming cells increases bone mass.
- The role of Y1R in bone-resorbing cells (osteoclasts) is unexplored.
Purpose of the Study:
- To investigate the role of Y1R deficiency in osteoclast formation and resorption.
- To determine the impact of Y1R germline deletion on osteoclast activity.
Main Methods:
- Osteoclast differentiation and functional assays in Y1R germline deleted (Y1R(-/-)) mice.
- Analysis of osteoclast morphology and bone resorption pit characteristics.
- Quantitative 3D analysis of resorption pits using the BonePit tool.
Main Results:
- Y1R(-/-) mice exhibited increased formation of large, multinucleated osteoclasts.
- Osteoclasts from Y1R(-/-) mice showed reduced expression of matrix degradation markers (TRAcP5b, MMP-9, CTSK).
- 3D analysis revealed significantly smaller and shallower resorption pits in Y1R(-/-) osteoclasts.
Conclusions:
- Y1R deficiency promotes the formation of larger osteoclasts with impaired bone-resorbing activity in vitro.
- This study unveils a novel therapeutic potential for Y1R signaling ablation in treating osteoclastic bone diseases.
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