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Updated: Aug 8, 2025

Analysis of Combinatorial miRNA Treatments to Regulate Cell Cycle and Angiogenesis
Published on: March 30, 2019
MiR‑221 and miR‑222 regulate cell cycle progression and affect chemosensitivity in breast cancer by targeting ANXA3
Ju-Yeon Kim1, Eun Jung Jung2, Jae-Myung Kim1
1Department of Surgery, Gyeongsang National University School of Medicine and Gyeongsang National University Hospital, Jinju, Gyeongsang 52727, Republic of Korea.
Abstract:
Breast malignancy remains one of the most common causes of cancer-associated mortalities among women. MicroRNA (miR)-221 and miR-222 are homologous miRs and have a substantial impact on cancer progression. In the present study, the regulatory mechanisms of miR-221/222 and its target annexin A3 (ANXA3) in breast cancer cells were investigated. Breast tissue samples were collected to evaluate the expression patterns of miR-221/222 levels in breast cancer cell lines and cancer tissues according to clinical characteristics. The levels of miR-221/222 were increased or decreased in cancer cell lines compared with normal breast cell lines according to cell line subtype. Subsequently, the changes in the progression and invasion of breast cancer cells were investigated using cell proliferation, invasion assay, gap closure and colony formation assays. Western blotting of cell cycle proteins and flow cytometry were performed to evaluate the possible pathway of miR-221/222 and ANXA3 axis. Chemosensitivity tests were performed to explore the suitability of the miR-221/222 and ANXA3 axis as a therapeutic target in breast cancer. The expression levels of miR-221/222 were associated with aggressive characteristics of breast cancer subtypes. Cell transfection assay demonstrated the regulation of breast cancer proliferation and invasiveness by miR-221/222. MiR-221/222 directly targeted the 3'-untranslated region of ANXA3 and suppressed the expression of ANXA3 at the mRNA and protein levels. In addition, miR-221/222 negatively regulated cell proliferation and the cell cycle pathway in breast cancer cells by targeting ANXA3. In combination with adriamycin, downregulation of ANXA3 may sensitize adriamycin-induced cell death to induction of persistent G2/M and G0/G1 arrest. Decreased expression of ANXA3 through increased expression of miR-221/222 reduced breast cancer progression and increased the effectiveness of the chemotherapy drug. The present results indicated the miR-221/222 and ANXA3 axis to be a possible novel therapeutic target for the treatment of breast cancer.
Insights
MicroRNA-221/222 (miR-221/222) targets annexin A3 (ANXA3) in breast cancer, inhibiting proliferation and invasion. This axis represents a potential therapeutic target for improving chemotherapy effectiveness.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Breast cancer is a leading cause of cancer mortality in women.
- MicroRNAs (miRs), specifically miR-221 and miR-222, play a significant role in cancer progression.
- Annexin A3 (ANXA3) is a potential target gene involved in cancer development.
Purpose of the Study:
- To investigate the regulatory mechanisms of miR-221/222 and their target ANXA3 in breast cancer.
- To evaluate the association between miR-221/222 expression and clinical characteristics of breast cancer subtypes.
- To explore the therapeutic potential of the miR-221/222 and ANXA3 axis in breast cancer treatment.
Main Methods:
- Analysis of miR-221/222 expression in breast cancer cell lines and tissues.
- Cell proliferation, invasion, gap closure, and colony formation assays.
- Western blotting, flow cytometry, and chemosensitivity tests.
- Cell transfection assays to confirm gene regulation.
Main Results:
- miR-221/222 levels varied in different breast cancer subtypes.
- miR-221/222 directly targeted ANXA3, suppressing its mRNA and protein expression.
- miR-221/222 negatively regulated breast cancer cell proliferation and the cell cycle by targeting ANXA3.
- Downregulation of ANXA3 sensitized cells to adriamycin, enhancing chemotherapy effectiveness.
Conclusions:
- The miR-221/222 and ANXA3 axis is implicated in breast cancer progression and invasiveness.
- Targeting this axis could offer a novel therapeutic strategy for breast cancer.
- Modulating miR-221/222 and ANXA3 may improve patient response to chemotherapy.
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