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Published on: June 16, 2023
Evaluation of Novel Benzo-annelated 1,4-dihydropyridines as MDR Modulators in Cancer Cells
Peter Werner1, Nikolétta Szemerédi2, Gabriella Spengler2
1Institute of Pharmacy, Martin-Luther-University Halle-Wittenberg, Wolfgang-Langenbeck-Str. 4, 06120 Halle, Germany.
Background:
Multidrug resistance (MDR) is the main problem in anticancer therapy today. Causative transmembrane efflux pumps in cancer cells have been reconsidered as promising anticancer target structures to restore anticancer drug sensitivity by various strategies, including MDR modulators. MDR modulators interfere with the efflux pumps and improve the cellular efficiency of chemotherapeutics. So far, only a few candidates have gone through clinical trials with disappointing results because of low specificity and toxic properties.
Aim:
This study aimed to find novel MDR modulators to effectively combat multidrug resistance in cancer cells.
Objective:
We synthesized various novel benzo-annelated 1,4-dihydropyridines to evaluate them as MDR modulators towards ABCB1 in cancer cells.
Methods:
Synthesized compounds were purified by column chromatography. The MDR modulation of ABCB1 was determined in cellular efflux assays using the flow cytometry technique and cellular fluorescent measurements by the use of each fluorescent substrate.
Results:
Compounds were yielded in a two-step reaction with structurally varied components. Further, substituent- dependent effects on the determined MDR inhibiting properties towards ABCB1 were discussed. Cellular studies prove that there is no toxicity and restoration of cancer cell sensitivity towards the used anticancer drug.
Conclusion:
Novel MDR modulators could be identified with favorable methoxy and ester group functions. Their use in both ABCB1 non-expressing and overexpressing cells proves a selective toxicity-increasing effect of the applied anticancer agent in the ABCB1 overexpressing cells, whereas the toxicity effect of the anticancer drug was almost unchanged in the non-expressing cells. These results qualify our novel compounds as perspective anticancer drugs compared to MDR modulators with nonselective toxicity properties.
Insights
Novel benzo-annelated 1,4-dihydropyridines were developed as multidrug resistance (MDR) modulators. These compounds restore anticancer drug sensitivity in MDR cancer cells without toxicity, offering a promising therapeutic strategy.
Area of Science:
- Medicinal Chemistry
- Cancer Biology
- Pharmacology
Background:
- Multidrug resistance (MDR) is a major challenge in cancer therapy, driven by efflux pumps that reduce chemotherapy effectiveness.
- Existing MDR modulators often lack specificity and exhibit toxic side effects, limiting their clinical application.
Purpose of the Study:
- To discover novel multidrug resistance (MDR) modulators targeting ABCB1 efflux pumps in cancer cells.
- To synthesize and evaluate benzo-annelated 1,4-dihydropyridines for their potential to overcome MDR.
Main Methods:
- Synthesis of novel benzo-annelated 1,4-dihydropyridine derivatives.
- Purification using column chromatography.
- Assessment of MDR modulation via cellular efflux assays using flow cytometry and fluorescent substrates.
Main Results:
- Successful synthesis of structurally diverse compounds through a two-step reaction.
- Identification of substituent-dependent effects on ABCB1-mediated MDR inhibition.
- Demonstrated lack of cellular toxicity and restoration of sensitivity to anticancer drugs in MDR cells.
Conclusions:
- Novel MDR modulators with methoxy and ester groups were identified.
- Compounds selectively enhanced anticancer agent toxicity in ABCB1-overexpressing cells.
- These novel compounds show potential as anticancer drugs with improved specificity compared to existing MDR modulators.
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