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MicroRNA-21 Increases Proliferation and Cisplatin Sensitivity of Osteosarcoma-Derived Cells
Vanita Vanas1, Barbara Haigl1, Verena Stockhammer2
1Institute of Cancer Research, Department of Medicine I, Medical University of Vienna, Vienna, Austria.
Abstract:
Osteosarcoma is the most common primary bone tumor and poor prognosis for osteosarcoma patients is mainly due to chemotherapy resistance. MicroRNAs are important to maintain pathophysiological mechanisms of cancer and influence cell sensitivity to chemotherapy. In this study, we tested the functions of microRNA-21 for malignant features as well as for drug resistance of osteosarcoma. We used Northern blot to measure microRNA-21 levels in osteosarcoma-derived cell lines. MicroRNA-21 activity was modulated by either expressing a sponge to decrease its activity in an osteosarcoma-derived cell line expressing high levels of microRNA-21 or by introducing pri-microRNA-21 in a cell line with low endogenous levels. Cell migration was determined in a scratch assay and cell proliferation was measured by performing growth curve analysis. Sensitivity of the cells towards chemotherapeutics was investigated by performing cell viability assays and calculating the IC50 values. While cell migration was unaffected by modulated microRNA-21 levels, microRNA-21 inhibition slowed proliferation and exogenously expressed microRNA-21 promoted this process. Modulated microRNA-21 activity failed to effect sensitivity of osteosarcoma-derived cell lines to doxorubicin or methotrexate. Contrarily, reduction of microRNA-21 activity resulted in enhanced resistance towards cisplatin while ectopic expression of microRNA-21 showed the opposite effect. Increased microRNA-21 levels repressed the expression of Sprouty2 and ectopic expression of Sprouty2 was able to largely rescue the observed effects of microRNA-21 in osteosarcoma. In summary, our data indicate that in osteosarcoma microRNA-21 expression is an important component for regulation of cell proliferation and for determining sensitivity to cisplatin.
Insights
MicroRNA-21 (miR-21) affects osteosarcoma cell proliferation and cisplatin resistance. Inhibiting miR-21 slowed proliferation and increased resistance, while increasing miR-21 had opposite effects, impacting Sprouty2 expression.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Osteosarcoma is the most common primary bone cancer.
- Chemotherapy resistance significantly worsens prognosis for osteosarcoma patients.
- MicroRNAs play crucial roles in cancer pathophysiology and drug sensitivity.
Purpose of the Study:
- To investigate the role of microRNA-21 in osteosarcoma malignancy.
- To determine the impact of microRNA-21 on chemotherapy drug resistance in osteosarcoma.
Main Methods:
- Measured microRNA-21 levels using Northern blot.
- Modulated microRNA-21 activity in cell lines via sponges and exogenous expression.
- Assessed cell proliferation, migration, and drug sensitivity (IC50 values).
Main Results:
- MicroRNA-21 levels influenced osteosarcoma cell proliferation but not migration.
- MicroRNA-21 inhibition enhanced resistance to cisplatin, while its overexpression increased sensitivity.
- MicroRNA-21 modulated Sprouty2 expression, which influenced these effects.
Conclusions:
- MicroRNA-21 is a key regulator of cell proliferation in osteosarcoma.
- MicroRNA-21 levels are critical in determining sensitivity to cisplatin in osteosarcoma.
- Sprouty2 is a downstream target involved in microRNA-21's effects.
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