Related Experiment Video
Updated: Sep 29, 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
Bone mesenchymal stem cell-derived extracellular vesicles containing NORAD promote osteosarcoma by miR-30c-5p
Hongtao He1, Muliang Ding2, Tao Li3
1Department of Traumatic Orthopedics, The Second Hospital of Dalian Medical University, Dalian, 116023, China.
Abstract:
Osteosarcoma is a bone tumor that often affects children, adolescents and young people. Non-coding RNA activated by DNA damage (NORAD) can promote the proliferation of cancer cells in multiple tumors. Thus, the current study set out to explore the role of NORAD derived from extracellular vesicles (EVs) of bone mesenchymal stem cells (BMSCs) in osteosarcoma. First, NORAD was highly expressed in osteosarcoma cells and tissues, which might be associated with the progression and metastasis of osteosarcoma. We isolated EVs from the characterized BMSCs, and found that NORAD was transferred from BMSCs to osteosarcoma cells via EVs in the co-culture system. Consequently, NORAD delivered by BMSC-derived EVs promoted the proliferation and invasion of osteosarcoma cells. Subsequently, bioinformatics analyses suggested potential binding relationship between NORAD and microRNA-30c-5p (miR-30c-5p) as well as between miR-30c-5p and Krueppel-like factor 10 (KLF10), and the results of which were further verified by dual luciferase reporter gene assay, RNA immunoprecipitation, and RNA pull-down assay. Mechanistically, NORAD acted as a sponge of miR-30c-5p and up-regulated the expression of KLF10 where miR-30-c-5p mimic declined the effect induced by NORAD on cancer cells. The osteosarcoma cells were injected into mice to develop tumor growth and metastasis models. In these two models, injection of BMSC-EVs elevated NORAD expression and KLF10 but reduced miR-30c-5p expression, whereby suppressing tumor growth and lung metastasis. To conclude, BMSC-EVs deliver NORAD to osteosarcoma cells to regulate the miR-30c-5p/KLF10 axis, thereby accelerating the progression and metastasis of osteosarcoma.
Insights
Extracellular vesicles from bone mesenchymal stem cells deliver NORAD to osteosarcoma, promoting tumor growth and metastasis by regulating the miR-30c-5p/KLF10 pathway.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Osteosarcoma is a prevalent bone cancer in young individuals.
- Non-coding RNA activated by DNA damage (NORAD) is implicated in cancer cell proliferation.
- The role of NORAD within extracellular vesicles (EVs) from bone mesenchymal stem cells (BMSCs) in osteosarcoma remains underexplored.
Purpose of the Study:
- To investigate the function of NORAD transported via BMSC-derived EVs in osteosarcoma progression.
- To elucidate the molecular mechanism involving NORAD, miR-30c-5p, and KLF10 in osteosarcoma.
Main Methods:
- Isolation and characterization of EVs from BMSCs.
- Co-culture systems to study intercellular transfer of NORAD.
- Bioinformatic analysis, dual luciferase reporter assays, RNA immunoprecipitation, and RNA pull-down assays to validate molecular interactions.
- In vivo mouse models for osteosarcoma growth and metastasis.
Main Results:
- NORAD expression is elevated in osteosarcoma tissues and correlates with disease progression.
- BMSC-derived EVs efficiently transfer NORAD to osteosarcoma cells, enhancing proliferation and invasion.
- NORAD acts as a molecular sponge for miR-30c-5p, leading to increased KLF10 expression.
- In vivo, BMSC-EV administration promoted osteosarcoma growth and metastasis by modulating the NORAD/miR-30c-5p/KLF10 axis.
Conclusions:
- BMSC-derived EVs deliver NORAD to osteosarcoma cells.
- The NORAD/miR-30c-5p/KLF10 axis is a key pathway regulated by BMSC-EVs, driving osteosarcoma progression and metastasis.

