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Plant extracts and betulin from Ligaria cuneifolia inhibit P-glycoprotein function in leukemia cells
Jerónimo Laiolo1, Cecilia L Barbieri2, Mariana B Joray1
1Fine Chemical and Natural Products Laboratory, IRNASUS CONICET-UCC, Catholic University of Córdoba, Córdoba, Argentina.
Abstract:
Overexpression of P-glycoprotein (P-gp), which is linked to multidrug resistance (MDR), is one of the underlying obstacles to the success of chemotherapy as it reduces the efficacy of anticancer drugs and the side effects of these increase as a result of any increased dose to achieve the therapeutic effect. To identify agents with P-gp inhibitory properties, ethanol extracts from 80 plants were screened for their ability to increase intracellular doxorubicin-associated fluorescence, and the extract of Ligaria cuneifolia was found to be the most effective. Its bioassay-guided isolation yielded the pentacyclic triterpene betulin as active agent. This efficiently inhibited P-gp mediated efflux, as demonstrated by the enhancement of the intracellular accumulation of doxorubicin and rhodamine 123 from 1.56 μM in the P-gp overexpressing MDR leukemia cell, Lucena 1. Betulin was also able to render Lucena 1 sensitive to Dox from 0.39 μM. The docking studies revealed that betulin tightly binds to a key region of the TMDs, with a binding mode overlapping one main site of doxorubicin and, more interestingly, emulating the same contacts as tariquidar, as revealed by the per-residue energetic analysis from molecular dynamics simulations. MTT assay using peripheral blood mononuclear cells and hemolysis assay showed that betulin is devoid of toxicity. These findings provide important evidence that betulin may be a safe and promising entity to be further investigated to develop agents able to overcome P-gp-mediated MDR, resulting in a more effective and less toxic chemotherapy.
Insights
Betulin, isolated from Ligaria cuneifolia, effectively inhibits P-glycoprotein (P-gp) to overcome multidrug resistance (MDR) in cancer. This non-toxic compound enhances chemotherapy efficacy, offering a promising strategy for more effective and safer cancer treatment.
Area of Science:
- Pharmacology
- Natural Products Chemistry
- Cancer Biology
Background:
- Multidrug resistance (MDR) mediated by P-glycoprotein (P-gp) overexpression is a major challenge in chemotherapy.
- P-gp reduces anticancer drug efficacy and necessitates higher doses, increasing toxicity.
Purpose of the Study:
- To identify plant-derived agents with P-gp inhibitory properties.
- To investigate the potential of betulin as a P-gp inhibitor for overcoming MDR.
Main Methods:
- Screening of 80 plant ethanol extracts for P-gp inhibitory activity using doxorubicin fluorescence.
- Bioassay-guided isolation of the active compound from Ligaria cuneifolia extract.
- In vitro assays (doxorubicin and rhodamine 123 accumulation, drug sensitivity), molecular docking, molecular dynamics simulations, MTT assay, and hemolysis assay.
Main Results:
- Ligaria cuneifolia extract demonstrated potent P-gp inhibitory activity.
- Betulin was identified as the active pentacyclic triterpene, significantly enhancing intracellular doxorubicin and rhodamine 123 accumulation.
- Betulin restored sensitivity to doxorubicin in P-gp overexpressing cells and showed favorable binding interactions with P-gp.
- Betulin exhibited no toxicity in peripheral blood mononuclear cells and hemolysis assays.
Conclusions:
- Betulin is a potent, non-toxic inhibitor of P-gp.
- Betulin shows significant promise as a therapeutic agent to overcome P-gp-mediated multidrug resistance in cancer.
- Further investigation of betulin could lead to more effective and less toxic chemotherapy regimens.
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