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Updated: Aug 17, 2025

Analysis of Combinatorial miRNA Treatments to Regulate Cell Cycle and Angiogenesis
Published on: March 30, 2019
Curcumin suppresses lung cancer progression via circRUNX1 mediated miR-760/RAB3D axis
Xiaodan Wu1, Hong Chen2, Na Liu3
1Department of Traditional Chinese Medicine, Central Hospital Affiliated to Shenyang Medical College, Shenyang, China.
Background:
Curcumin is a natural chemical component that has an anticancer effect. The aim of this study was to explore the potential molecular mechanism of curcumin regulating lung cancer (LC) progression.
Methods:
The expression of circRUNX1, miR-760 and Ras-like GTPase 3D (RAB3D) was detected by qRT-PCR. Cell proliferation were determined by CCK8 assay and colony formation assay. Cell apoptosis, migration and invasion were detected by flow cytometry, wound healing and transwell assays. Protein levels were examined by western blot (WB) analysis. RNA interaction was confirmed by dual-luciferase reporter assay. LC xenograft tumors were constructed using BALB/c nude mice.
Results:
CircRUNX1 was upregulated in LC and its expression could be inhibited by curcumin. Curcumin reduced LC cell proliferation, metastasis, and accelerate apoptosis, while circRUNX1 overexpression reversed these effects. MiR-760 was confirmed to be a target of circRUNX1, which could reverse the effects of circRUNX1 on curcumin-treated LC cell functions. RAB3D was a target of miR-760, and its knockdown reversed the promotion effect of miR-760 inhibitor on the progression of curcumin-treated LC cells.
Conclusion:
Curcumin suppressed LC progression via circRUNX1/miR-760/RAB3D axis.
Insights
Curcumin, a natural compound, inhibits lung cancer (LC) progression. It acts through the circRUNX1/miR-760/RAB3D pathway, reducing cell proliferation and metastasis while promoting apoptosis.
Area of Science:
- Oncology
- Molecular Biology
- Natural Products Chemistry
Background:
- Lung cancer (LC) remains a leading cause of cancer-related mortality worldwide.
- Curcumin, a polyphenol derived from turmeric, exhibits promising anticancer properties.
- Understanding the molecular mechanisms underlying curcumin's effects in LC is crucial for therapeutic development.
Purpose of the Study:
- To elucidate the molecular mechanism by which curcumin regulates lung cancer (LC) progression.
- To investigate the role of the circRUNX1/miR-760/RAB3D axis in curcumin's anti-LC effects.
Main Methods:
- Quantitative real-time PCR (qRT-PCR) to measure circRUNX1, miR-760, and RAB3D expression.
- Cellular assays including CCK8, colony formation, flow cytometry, wound healing, and Transwell assays to assess proliferation, apoptosis, migration, and invasion.
- Western blot analysis for protein expression.
- Dual-luciferase reporter assays to confirm RNA interactions.
- In vivo studies using LC xenograft models in nude mice.
Main Results:
- CircRUNX1 was found to be upregulated in LC tissues and its expression was inhibited by curcumin.
- Curcumin treatment significantly reduced LC cell proliferation, metastasis, and induced apoptosis; these effects were reversed by circRUNX1 overexpression.
- MiR-760 was identified as a direct target of circRUNX1, mediating the effects of circRUNX1 on curcumin-treated LC cells.
- RAB3D was confirmed as a target of miR-760, and its knockdown reversed the pro-progression effects of miR-760 inhibition in curcumin-treated LC cells.
Conclusions:
- Curcumin suppresses lung cancer progression through the circRUNX1/miR-760/RAB3D molecular axis.
- This study identifies a novel regulatory pathway for curcumin's anticancer activity in lung cancer.
- Targeting the circRUNX1/miR-760/RAB3D axis may represent a potential therapeutic strategy for lung cancer treatment.
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