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Updated: Dec 18, 2025

A Preclinical Mouse Model of Osteosarcoma to Define the Extracellular Vesicle-mediated Communication Between Tumor and Mesenchymal Stem Cells
Published on: May 6, 2018
Cluster of differentiation 44 promotes osteosarcoma progression in mice lacking the tumor suppressor Merlin
Junzhi Ma1, Janina Klemm2, Monserrat Gerardo-Ramírez2
1Leibniz Institute on Aging, Fritz Lipmann Institute (FLI), Jena, Germany.
Abstract:
Merlin is a versatile tumor suppressor protein encoded by the NF2 gene. Several lines of evidence suggest that Merlin exerts its tumor suppressor activity, at least in part, by forming an inhibitory complex with cluster of differentiation 44 (CD44). Consistently, numerous NF2 mutations in cancer patients are predicted to perturb the interaction of Merlin with CD44. We hypothesized that disruption of the Merlin-CD44 complex through loss of Merlin, unleashes putative tumor- or metastasis-promoting functions of CD44. To evaluate the relevance of the Merlin-CD44 interaction in vivo, we compared tumor growth and progression in Cd44-positive and Cd44-negative Nf2-mutant mice. Heterozygous Nf2-mutant mice were prone to developing highly metastatic osteosarcomas. Importantly, while the absence of the Cd44 gene had no effect on the frequency of primary osteosarcoma development, it strongly diminished osteosarcoma metastasis formation in the Nf2-mutant mice. In vitro assays identified transendothelial migration as the most prominent cellular phenotype dependent on CD44. Adhesion to endothelial cells was blocked by interfering with integrin α4β1 (very late antigen-4, VLA-4) on osteosarcoma cells and CD44 upregulated levels of integrin VLA-4 β1 subunit. Among other putative functions of CD44, which may contribute to the metastatic behavior, the passage through the endothelial cells also appears to be critical in vivo, as CD44 significantly promoted formation of lung metastasis upon intravenous injection of osteosarcoma cells into immunocompromised mice. Altogether, our results strongly suggest that CD44 plays a metastasis-promoting role in the absence of Merlin.
Insights
Loss of Merlin protein unleashes CD44
Area of Science:
- Oncology
- Molecular Biology
- Cancer Metastasis
Background:
- Merlin, encoded by the NF2 gene, is a tumor suppressor.
- Merlin inhibits tumor progression by complexing with CD44.
- NF2 mutations disrupt the Merlin-CD44 interaction, potentially activating CD44.
Purpose of the Study:
- To investigate the role of the Merlin-CD44 interaction in tumor growth and metastasis.
- To determine if CD44 promotes tumor- or metastasis-promoting functions when Merlin is lost.
Main Methods:
- Comparison of tumor growth and metastasis in Cd44-positive and Cd44-negative Nf2-mutant mice.
- In vitro assays to identify CD44-dependent cellular phenotypes.
- Assessment of CD44's role in transendothelial migration and integrin VLA-4 expression.
- Evaluation of CD44's effect on lung metastasis formation after intravenous injection of osteosarcoma cells.
Main Results:
- Nf2-mutant mice developed highly metastatic osteosarcomas.
- CD44 deficiency significantly reduced osteosarcoma metastasis but not primary tumor development.
- Transendothelial migration was identified as a key CD44-dependent cellular phenotype.
- CD44 upregulated integrin α4β1 (VLA-4) on osteosarcoma cells, facilitating endothelial adhesion.
- CD44 significantly promoted lung metastasis formation in vivo.
Conclusions:
- CD44 plays a significant metastasis-promoting role in the absence of Merlin.
- Disruption of the Merlin-CD44 complex unleashes CD44's pro-metastatic functions.
- Targeting CD44 may offer therapeutic strategies for metastatic osteosarcoma.
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