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Analysis of Combinatorial miRNA Treatments to Regulate Cell Cycle and Angiogenesis
Published on: March 30, 2019
Epigenetics and miRNA as predictive markers and targets for lung cancer chemotherapy
Raafat A El-Awady1, Fatema Hersi, Hala Al-Tunaiji
1a College of Pharmacy; University of Sharjah ; Sharjah , United Arab Emirates.
Abstract:
Lung cancer cells show inherent and acquired resistance to chemotherapy. The lack of good predictive markers/novel targets and the incomplete understanding of the mechanisms of resistance limit the success of lung cancer response to chemotherapy. In the present study, we used an isogenic pair of lung adenocarcinoma cell lines; A549 (wild-type) and A549DOX11 (doxorubicin resistant) to study the role of epigenetics and miRNA in resistance/response of non-small cell lung cancer (NSCLC) cells to doxorubicin. Our results demonstrate differential expression of epigenetic markers whereby the level of HDACs 1, 2, 3 and4, DNA methyltransferase, acetylated H2B and acetylated H3 were lower in A549DOX11 compared to A549 cells. Fourteen miRNAs were dys-regulated in A549DOX11 cells compared to A549 cells, of these 14 miRNAs, 4 (has-mir-1973, 494, 4286 and 29b-3p) have shown 2.99 - 4.44 fold increase in their expression. This was associated with reduced apoptosis and higher resistance of A549DOX11cells to doxorubicin and etoposide. Sequential treatment with the epigenetic modifiers trichostatin A or 5-aza-2'-deoxycytidine followed by doxorubicin resulted in: (i) enhanced sensitivity of both cell lines to doxorubicin especially at low concentrations, (ii) enhanced doxorubicin-induced DNA damage in both cell lines, (iii) dysregulation of some miRNAs in A549 cells. In conclusion, A549DOX11 cells resistant to DNA damaging drugs have epigenetic profile and miRNA expression different from the sensitive cells. Moreover, epigenetic modifiers may reverse the resistance of certain NSCLC cells to DNA damaging agents by enhancing induction of DNA damage. This may open the door for using epigenetic profile/miRNA expression of some cancer cells as resistance markers/targets to improve response of resistant cells to doxorubicin and for the use of combination doxorubicin/epigenetic modifiers to reduce doxorubicin toxicity.
Insights
Epigenetic changes and miRNA dysregulation contribute to non-small cell lung cancer (NSCLC) resistance to chemotherapy. Epigenetic modifiers can re-sensitize resistant NSCLC cells to doxorubicin, offering new therapeutic strategies.
Area of Science:
- Oncology
- Molecular Biology
- Epigenetics
Background:
- Lung cancer exhibits resistance to chemotherapy, hindering treatment efficacy.
- Understanding resistance mechanisms and identifying predictive markers are crucial for improving non-small cell lung cancer (NSCLC) outcomes.
- Epigenetic modifications and microRNAs (miRNAs) are implicated in drug resistance.
Purpose of the Study:
- To investigate the role of epigenetics and miRNA in doxorubicin resistance in non-small cell lung cancer (NSCLC).
- To compare epigenetic markers and miRNA expression between sensitive and doxorubicin-resistant NSCLC cell lines.
- To evaluate the potential of epigenetic modifiers in overcoming doxorubicin resistance.
Main Methods:
- Utilized an isogenic pair of lung adenocarcinoma cell lines: A549 (wild-type) and A549DOX11 (doxorubicin-resistant).
- Assessed differential expression of epigenetic markers (HDACs, DNA methyltransferase, acetylation) and miRNAs.
- Treated cells with sequential combinations of epigenetic modifiers (trichostatin A, 5-aza-2'-deoxycytidine) and doxorubicin.
Main Results:
- Resistant A549DOX11 cells showed lower levels of specific epigenetic markers compared to sensitive A549 cells.
- Fourteen miRNAs were dysregulated in A549DOX11 cells, with four showing significant upregulation.
- Sequential treatment with epigenetic modifiers enhanced doxorubicin sensitivity and DNA damage induction in both cell lines.
Conclusions:
- Doxorubicin-resistant NSCLC cells possess distinct epigenetic and miRNA profiles.
- Epigenetic modifiers show promise in reversing chemoresistance in NSCLC by enhancing DNA damage.
- Epigenetic profiles and miRNA expression may serve as resistance markers, and combination therapy could improve treatment response and reduce toxicity.
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