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Published on: October 28, 2021
miR-26a Reverses Multidrug Resistance in Osteosarcoma by Targeting MCL1
1Department of Orthopaedic, The Second Hospital of Hebei Medical University, Shijiazhuang, China.
Abstract:
The multidrug resistance (MDR) acquired in human osteosarcoma is a huge obstacle for effective chemotherapy. Recently, microRNA-26a (miR-26a) has been associated with the pathogenesis and progression of osteosarcoma. However, whether it regulates MDR in osteosarcoma is unknown. We show here that miR-26a expression declines in chemoresistant osteosarcoma after neoadjuvant chemotherapy, and its expression correlates with clinical outcome. In addition, compared with sensitive parental cells, miR-26a expression also declines in osteosarcoma MDR cells, together suggesting a negative correlation between miR-26a expression and MDR development in osteosarcoma. We also show that the enforced expression of miR-26a reverses MDR in osteosarcoma cells, and conversely, miR-26a knockdown confers MDR in chemosensitive osteosarcoma cells treated with doxorubicin, methotrexate, or cisplatin. Mechanistically, miR-26a directly targets the pro-survival protein myeloid cell leukemia 1 (MCL1), and in turn, the enforced expression of MCL1 markedly antagonizes miR-26a-decreased MDR in osteosarcoma MDR cells, therefore demonstrating that miR-26a reverses MDR in osteosarcoma by targeting MCL1. Lastly, miR-26a reverses resistance to doxorubicin in osteosarcoma MDR cells xenografted in nude mice. Collectively, these results reveal a negative role and the underlying mechanism of miR-26a in the regulation of MDR in human osteosarcoma, implying a potential tactic of manipulating miR-26a for overcoming MDR in osteosarcoma chemotherapy.
Insights
MicroRNA-26a (miR-26a) levels decrease in osteosarcoma with multidrug resistance (MDR). Restoring miR-26a reverses MDR by targeting MCL1, offering a potential chemotherapy strategy.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Multidrug resistance (MDR) is a significant challenge in osteosarcoma chemotherapy.
- MicroRNA-26a (miR-26a) is implicated in osteosarcoma progression, but its role in MDR is unclear.
Purpose of the Study:
- To investigate the role of miR-26a in the development and regulation of MDR in human osteosarcoma.
- To elucidate the underlying molecular mechanism by which miR-26a influences MDR.
Main Methods:
- Analysis of miR-26a expression in chemoresistant and sensitive osteosarcoma cells and patient samples.
- In vitro experiments involving miR-26a overexpression and knockdown.
- Luciferase reporter assays to confirm direct targeting of MCL1 by miR-26a.
- In vivo studies using xenograft models in nude mice.
Main Results:
- miR-26a expression is significantly reduced in chemoresistant osteosarcoma cells and correlates with poor clinical outcomes.
- Enforced miR-26a expression resensitizes osteosarcoma cells to chemotherapy drugs (doxorubicin, methotrexate, cisplatin).
- miR-26a directly targets and downregulates the pro-survival protein MCL1, which mediates the reversal of MDR.
Conclusions:
- miR-26a plays a crucial role in suppressing MDR in human osteosarcoma.
- Targeting MCL1 by miR-26a represents a novel mechanism for overcoming chemotherapy resistance.
- Modulating miR-26a levels holds therapeutic potential for enhancing osteosarcoma treatment efficacy.

