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An Orthotopic Model of Serous Ovarian Cancer in Immunocompetent Mice for in vivo Tumor Imaging and Monitoring of Tumor Immune Responses
Published on: November 28, 2010
let-7d-3p is associated with apoptosis and response to neoadjuvant chemotherapy in ovarian cancer
Raúl García-Vázquez1, Dolores Gallardo Rincón2, Erika Ruiz-García3
1Molecular Biomedicine Program and Biotechnology Network, Instituto Politecnico Nacional, México City 07320, Mexico.
Abstract:
Altered expression of microRNAs contributes to the heterogeneous biological behavior of human malignancies and it may correlate with the clinical pathological features of patients. The let-7 microRNA family is frequently downregulated in human cancers and its aberrant expression may be a useful marker for prediction of the clinical response to therapy in patients. In the present study, we analyzed the expression of three members of the let-7 family (let-7a-3p, let-7d-3p and let-7f), which remains largely uncharacterized in ovarian cancer tissues. We also investigated the function of let-7d-3p in the apoptosis and sensitization to chemotherapy in ovarian cancer cells. Our data from stem-loop quantitative RT-PCR showed that expression of let-7a-3p and let-7d-3p, but not let-7f, was significantly (P<0.04) upregulated in ovarian tumors relative to that noted in normal ovarian tissues. Markedly, an increased expression of let‑7d-3p (also known as let-7d-3*) was associated with positive response to carboplatin/paclitaxel treatment in ovarian cancer patients. To investigate the biological relevance of let‑7d-3p, we knocked down its expression in SKOV-3 ovarian cancer cell line using antagomiRs. Loss of function analysis showed that inhibition of let-7d-3p significantly (P<0.05) impaired cell proliferation and activated apoptosis. In contrast, scratch/wound healing and Transwell chamber assays showed that migration and invasion abilities were not affected in the let-7d-3p-deficient SKOV-3 cancer cells. Notably, Annexin V assays showed a significant (P<0.05) increase in cell death of cancer cells treated with the let-7d-3p inhibitor plus carboplatin indicating a synergistic effect of the drug with antagomiR therapy. Gene ontology classification of predicted targets of let-7d-3p identified a number of genes involved in cellular pathways associated with therapy resistance such as ABC transporters, HIF-1, RAS and ErbB signaling. In summary, our findings showed that inhibition of let-7d-3 activates apoptosis and that its upregulation is associated with a positive response of ovarian cancer patients to carboplatin/paclitaxel chemotherapy.
Insights
let-7d-3p microRNA upregulation in ovarian tumors correlates with positive chemotherapy response. Inhibiting let-7d-3p in ovarian cancer cells promotes apoptosis and enhances sensitivity to carboplatin/paclitaxel treatment.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- MicroRNA (miRNA) dysregulation is implicated in human cancer development and progression.
- The let-7 miRNA family, often downregulated in cancers, shows potential as a predictive marker for therapeutic response.
- The role of specific let-7 family members, including let-7d-3p, in ovarian cancer remains largely uncharacterized.
Purpose of the Study:
- To analyze the expression of let-7a-3p, let-7d-3p, and let-7f in ovarian cancer tissues.
- To investigate the functional role of let-7d-3p in ovarian cancer cell apoptosis and chemosensitivity.
- To explore the association between let-7d-3p expression and patient response to carboplatin/paclitaxel chemotherapy.
Main Methods:
- Stem-loop quantitative RT-PCR for miRNA expression analysis.
- AntagomiR-mediated knockdown of let-7d-3p in SKOV-3 ovarian cancer cells.
- Cell proliferation, apoptosis (Annexin V assay), migration, and invasion assays.
- Gene ontology analysis of predicted let-7d-3p targets.
Main Results:
- let-7a-3p and let-7d-3p were significantly upregulated in ovarian tumors compared to normal tissues (P<0.04).
- Increased let-7d-3p expression correlated with a positive response to carboplatin/paclitaxel treatment.
- let-7d-3p inhibition impaired cell proliferation and induced apoptosis (P<0.05).
- Combined treatment with let-7d-3p inhibitor and carboplatin showed a synergistic effect on cancer cell death (P<0.05).
- Migration and invasion were not affected by let-7d-3p knockdown.
- Predicted targets of let-7d-3p are involved in therapy resistance pathways (e.g., ABC transporters, HIF-1, RAS, ErbB signaling).
Conclusions:
- let-7d-3p upregulation is associated with favorable outcomes in ovarian cancer patients treated with carboplatin/paclitaxel.
- let-7d-3p inhibition promotes apoptosis and sensitizes ovarian cancer cells to chemotherapy, suggesting a role in overcoming therapy resistance.
- let-7d-3p may serve as a predictive biomarker and a therapeutic target in ovarian cancer.
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