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Angiogenic role of miR-20a in breast cancer
Gines Luengo-Gil1,2,3, Enrique Gonzalez-Billalabeitia1,3,4, Sergio Alejo Perez-Henarejos1,3
1Department of Hematology and Medical Oncology, Hospital Universitario Morales Meseguer y Centro Regional de Hemodonación, Murcia, Spain.
Background:
Angiogenesis is a key process for tumor progression and a target for treatment. However, the regulation of breast cancer angiogenesis and its relevance for clinical resistance to antiangiogenic drugs is still incompletely understood. Recent developments on the contribution of microRNA to tumor angiogenesis and on the oncogenic effects of miR-17-92, a miRNA cluster, point to their potential role on breast cancer angiogenesis. The aim of this work was to establish the contribution of miR-20a, a member of miR-17-92 cluster, to tumor angiogenesis in patients with invasive breast carcinoma.
Methods:
Tube-formation in vitro assays with conditioned medium from MCF7 and MDA-MB-231 breast cancer cell lines were performed after transfection with miR-20a and anti-miR20a. For clinical validation of the experimental findings, we performed a retrospective analysis of a series of consecutive breast cancer patients (n = 108) treated with neoadjuvant chemotherapy and with a full characterization of their vessel pattern and expression of angiogenic markers in pre-treatment biopsies. Expression of members of the cluster miR-17-92 and of angiogenic markers was determined by RT-qPCR after RNA purification from FFPE samples.
Results:
In vitro angiogenesis assays with endothelial cells and conditioned media from breast cancer cell lines showed that transfection with anti-miR20a in MDA-MB-231 significantly decreased mean mesh size and total mesh area, while transfection with miR-20a in MCF7 cells increased mean mesh size. MiR-20a angiogenic effects were abrogated by treatment with aflibercept, a VEGF trap. These results were supported by clinical data showing that mir-20a expression was higher in tumors with no estrogen receptor or with more extensive nodal involvement (cN2-3). A higher miR-20a expression was associated with higher mean vessel size (p = 0.015) and with an angiogenic pattern consisting in larger vessels, higher VEGFA expression and presence of glomeruloid microvascular proliferations (p<0.001). This association was independent of tumor subtype and VEGFA expression.
Conclusions:
Transfection of breast cancer cells with miR-20a induces vascular changes in endothelial tube-formation assays. Expression of miR-20a in breast invasive carcinomas is associated with a distinctive angiogenic pattern consisting in large vessels, anomalous glomeruloid microvascular proliferations and high VEGFA expression. Our results suggest a role for miR-20a in the regulation of breast cancer angiogenesis, and raise the possibility of its use as an angiogenic biomarker.
Insights
MicroRNA-20a (miR-20a) promotes breast cancer angiogenesis by increasing vessel size and promoting abnormal vessel growth. This suggests miR-20a may serve as a potential biomarker for predicting treatment response.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Angiogenesis is crucial for tumor growth and a therapeutic target.
- Breast cancer angiogenesis regulation and anti-angiogenic drug resistance are not fully understood.
- MicroRNAs, particularly the miR-17-92 cluster, are implicated in tumor angiogenesis.
Purpose of the Study:
- To determine the contribution of miR-20a to tumor angiogenesis in invasive breast carcinoma patients.
- To investigate the role of miR-20a in regulating endothelial cell behavior in vitro.
- To correlate miR-20a expression with clinical and pathological features in breast cancer.
Main Methods:
- In vitro tube-formation assays using breast cancer cell lines (MCF7, MDA-MB-231) transfected with miR-20a or anti-miR20a.
- Retrospective analysis of 108 breast cancer patients treated with neoadjuvant chemotherapy, assessing pre-treatment biopsies for vessel patterns and angiogenic markers.
- RT-qPCR analysis of miR-17-92 cluster members and angiogenic markers from FFPE samples.
Main Results:
- miR-20a enhanced in vitro angiogenesis, while anti-miR20a reduced it.
- miR-20a's pro-angiogenic effects were blocked by aflibercept (VEGF trap).
- Clinical data showed higher miR-20a expression in tumors with specific characteristics (no ER, advanced nodal involvement) and was associated with larger vessels, higher VEGFA, and glomeruloid microvascular proliferations.
Conclusions:
- miR-20a induces vascular changes in endothelial cells.
- miR-20a expression in invasive breast carcinoma correlates with a distinct angiogenic profile.
- miR-20a plays a role in breast cancer angiogenesis and may be a potential angiogenic biomarker.
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