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.

Oncology Reports
|April 17, 2018
PubMed

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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