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Updated: Jun 14, 2025

A Syngeneic Orthotopic Osteosarcoma Sprague Dawley Rat Model with Amputation to Control Metastasis Rate
Published on: May 3, 2021
The sEVs miR-487a/Notch2/GATA3 axis promotes osteosarcoma lung metastasis by inducing macrophage polarization toward
Piaopiao Wang1, Lei Yang2, Jing Dong1
1Department of Clinical Pharmacy, Gongli Hospital of Shanghai Pudong New Area, 219, Miaopu Road, Pudong New Area, 200135, Shanghai, China.
Abstract:
Small extracellular vesicles (sEVs) are important mediators of intercellular communication between tumor cells and their surrounding environment. Furthermore, the mechanisms by which miRNAs carried in tumor sEVs regulate macrophage polarization remain largely unknown. To concentrate sEVs, we used the traditional ultracentrifugation method. Western blot, NanoSight, and transmission electron microscopy were used to identify sEVs. To determine the function of sEVs-miR-487a, we conducted in vivo and in vitro investigations. The intercellular communication mechanism between osteosarcoma cells and M2 macrophages, mediated by sEVs carrying miR-487a, was validated using luciferase reporter assays, transwell assays, and Western blot analysis. In vitro, sEVs enriched in miR-487a and delivered miR-487a to macrophages, promoting macrophage polarization toward an M2-like type, which promotes proliferation, migration, invasion, and epithelial-mesenchymal transition (EMT) of osteosarcoma cells. In vivo, sEVs enriched in miR-487a facilitate lung metastasis of osteosarcoma. Moreover, plasma miR-487a in sEVs was shown to be a potential biomarker applicable for osteosarcoma diagnosis. In summary, miR-487a derived from osteosarcoma cells can be transferred to macrophages via sEVs, then promote macrophage polarization towards an M2-like type by targeting Notch2 and activating the GATA3 pathway. In a feedback loop, the activation of macrophages accelerates epithelial-mesenchymal transition (EMT), which in turn promotes the migration, invasion, and lung metastasis of osteosarcoma cells. This reciprocal interaction between activated macrophages and osteosarcoma cells contributes to the progression of the disease. Our data demonstrate a new mechanism that osteosarcoma tumor cells derived exosomal-miR-487a which is involved in osteosarcoma development by regulating macrophage polarization in tumor microenvironment (TME).
Insights
Osteosarcoma cells release miR-487a via small extracellular vesicles (sEVs) to promote M2 macrophage polarization. This interaction fuels tumor growth, metastasis, and offers a potential diagnostic biomarker for osteosarcoma.
Area of Science:
- Oncology
- Cell Biology
- Molecular Biology
Background:
- Small extracellular vesicles (sEVs) mediate intercellular communication in tumors.
- Mechanisms of miRNA regulation of macrophage polarization by tumor sEVs are largely unknown.
- Understanding these interactions is crucial for osteosarcoma progression and treatment.
Purpose of the Study:
- To investigate the role of miR-487a carried by osteosarcoma-derived sEVs in regulating macrophage polarization.
- To elucidate the intercellular communication mechanism between osteosarcoma cells and M2 macrophages.
- To explore the potential of plasma sEV-miR-487a as an osteosarcoma diagnostic biomarker.
Main Methods:
- Ultracentrifugation for sEVs concentration.
- sEV identification using Western blot, NanoSight, and transmission electron microscopy.
- In vitro and in vivo experiments, including luciferase reporter assays, transwell assays, and Western blot analysis.
Main Results:
- sEVs enriched in miR-487a promoted M2-like macrophage polarization.
- M2 macrophages promoted osteosarcoma cell proliferation, migration, invasion, and epithelial-mesenchymal transition (EMT).
- sEVs-miR-487a facilitated lung metastasis in vivo and identified as a potential diagnostic biomarker.
Conclusions:
- Osteosarcoma-derived exosomal miR-487a targets Notch2 and activates the GATA3 pathway, promoting M2 macrophage polarization.
- This promotes a feedback loop accelerating osteosarcoma EMT, migration, invasion, and metastasis.
- This study reveals a novel mechanism of osteosarcoma development involving sEV-mediated communication and macrophage polarization in the tumor microenvironment.
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