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Author Spotlight: A Selective Luciferase-Based Assay for Monitoring ATG4B 27 Activity in Cells
Published on: June 30, 2023
Targeting autophagy to modulate cell survival: a comparative analysis in cancer, normal and embryonic cells
Aleksandra Divac Rankov1, Mila Ljujić1, Marija Petrić1
1Institute of Molecular Genetics and Genetic Engineering, University of Belgrade, Vojvode Stepe 444a, 11010, Belgrade, Serbia.
Abstract:
Autophagy is linked to multiple cancer-related signaling pathways, and represents a defense mechanism for cancer cells under therapeutic stress. The crosstalk between apoptosis and autophagy is essential for both tumorigenesis and embryonic development. We studied the influence of autophagy on cell survival in pro-apoptotic conditions induced by anticancer drugs in three model systems: human cancer cells (NCI-H460, COR-L23 and U87), human normal cells (HaCaT and MRC-5) and zebrafish embryos (Danio rerio). Autophagy induction with AZD2014 and tamoxifen antagonized the pro-apoptotic effect of chemotherapeutics doxorubicin and cisplatin in cell lines, while autophagy inhibition by wortmannin and chloroquine synergized the action of both anticancer agents. This effect was further verified by assessing cleaved caspase-3 and PARP-1 levels. Autophagy inhibitors significantly increased both apoptotic markers when applied in combination with doxorubicin while autophagy inducers had the opposite effect. In a similar manner, autophagy induction in zebrafish embryos prevented cisplatin-induced apoptosis in the tail region while autophagy inhibition increased cell death in the tail and retina of cisplatin-treated animals. Autophagy modulation with direct inhibitors of the PI3kinase/Akt/mTOR pathway (AZD2014 and wortmannin) triggered the cellular response to anticancer drugs more effectively in NCI-H460 and zebrafish embryonic models compared to HaCaT suggesting that these modulators are selective towards rapidly proliferating cells. Therefore, evaluating the autophagic properties of chemotherapeutics could help determine more accurately the fate of different cell types under treatment. Our study underlines the importance of testing autophagic activity of potential anticancer agents in a comparative approach to develop more rational anticancer therapeutic strategies.
Insights
Autophagy modulates cancer cell survival during chemotherapy. Inhibiting autophagy enhances drug effectiveness, while inducing it offers protection, highlighting its role in anticancer strategies.
Area of Science:
- Cellular Biology
- Cancer Research
- Developmental Biology
Background:
- Autophagy is a cellular defense mechanism crucial in cancer and development.
- Its interplay with apoptosis influences cancer cell survival under therapeutic stress.
Purpose of the Study:
- To investigate autophagy's impact on cancer cell and normal cell survival under chemotherapy.
- To assess autophagy modulation effects in zebrafish embryos exposed to anticancer drugs.
Main Methods:
- Utilized human cancer and normal cell lines (NCI-H460, COR-L23, U87, HaCaT, MRC-5) and zebrafish embryos (Danio rerio).
- Administered autophagy inducers (AZD2014, tamoxifen) and inhibitors (wortmannin, chloroquine) alongside chemotherapeutics (doxorubicin, cisplatin).
- Quantified apoptosis markers (cleaved caspase-3, PARP-1) and observed effects in zebrafish tissues.
Main Results:
- Autophagy inducers reduced chemotherapy-induced apoptosis; inhibitors enhanced it in cell lines.
- Autophagy modulation showed differential effects on cancer cells versus normal cells.
- In zebrafish embryos, autophagy induction protected against cisplatin-induced cell death, while inhibition exacerbated it.
Conclusions:
- Autophagy plays a critical role in cell fate determination during anticancer drug treatment.
- Targeting autophagy can synergize or antagonize chemotherapy, depending on the agent and cell type.
- Evaluating autophagic activity is vital for developing selective and effective anticancer therapies.
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