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A Doxorubicin-Induced Murine Model of Dilated Cardiomyopathy In Vivo
Published on: May 16, 2020
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.
Abstract:
Clinical application of chemotherapy in lung cancer is constrained by side effects, notably cardiotoxicity, the mechanisms of which remain elusive. This study assessed the potential of specific miRNAs as biomarkers for chemotherapy-induced cardiotoxicity in lung cancer. We employed two lung adenocarcinoma cell lines (Calu6 and H1792) and ventricular normal human cardiac fibroblasts (NHCF-V) in single and co-culture experiments. Functional tests were conducted using 100 µM carboplatin and 1µM vinorelbine doses. The effects of carboplatin and vinorelbine, both individually and in combination, were evaluated at cellular and molecular levels 48h post-therapy for both mono- and co-cultures. miR-205-5p, miR-21-5p, and miR-30a-5p, modulated by anticancer treatments and influencing cardiotoxicity, were analyzed. Vinorelbine and carboplatin treatment promoted apoptosis and autophagy in lung cancer cells and cardiac fibroblasts more than in controls. Western blot analyses revealed BCL2 and p53 protein upregulation. Using qRT-PCR, we investigated the expression dynamics of miR-21-5p, miR-30c-5p, and miR-205-5p in co-cultured cardiomyocytes and lung cancer cells, revealing altered miRNA patterns from vinorelbine and carboplatin treatment. Our findings underscore the intricate relationship between chemotherapy, miRNA regulation, and cardiotoxicity, highlighting the importance of cardiac health in lung cancer treatment decisions.
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.
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