MicroRNAs expression profile in chemotherapy-induced cardiotoxicity in NSCLC using a co-culture model

Mihai Romitan1, Oana Zanoaga1, Liviuta Budisan1

  • 1Research Center for Functional Genomics, Biomedicine and Translational Medicine, Iuliu Haţieganu University of Medicine and Pharmacy, Cluj-Napoca, Romania.

PubMed

Insights

Chemotherapy for lung cancer can harm the heart. This study found specific microRNAs (miRNAs) change with treatment, potentially indicating chemotherapy-induced cardiotoxicity risk in lung cancer patients.

Area of Science:

  • Oncology
  • Cardiology
  • Molecular Biology

Background:

  • Chemotherapy for lung cancer causes cardiotoxicity, with unclear mechanisms.
  • MicroRNAs (miRNAs) are investigated as potential biomarkers for this side effect.

Purpose of the Study:

  • To assess specific miRNAs as biomarkers for chemotherapy-induced cardiotoxicity in lung cancer.
  • To investigate the effects of carboplatin and vinorelbine on lung cancer cells and cardiac fibroblasts.

Main Methods:

  • Utilized lung adenocarcinoma cell lines (Calu6, H1792) and human cardiac fibroblasts in co-culture.
  • Administered carboplatin and vinorelbine, evaluating cellular and molecular effects at 48 hours.
  • Analyzed apoptosis, autophagy, protein expression (BCL2, p53), and miRNA dynamics (miR-21-5p, miR-30c-5p, miR-205-5p) via qRT-PCR and Western blot.

Main Results:

  • Carboplatin and vinorelbine induced apoptosis and autophagy in both cancer cells and cardiac fibroblasts.
  • Upregulation of BCL2 and p53 proteins was observed.
  • Altered expression patterns of miR-21-5p, miR-30c-5p, and miR-205-5p were detected in co-cultures post-treatment.

Conclusions:

  • Chemotherapy significantly impacts miRNA expression in lung cancer and cardiac cells.
  • These miRNA alterations are linked to chemotherapy-induced cardiotoxicity.
  • Monitoring miRNAs may aid in managing cardiac health during lung cancer treatment.