Cariprazine, A Dopamine D₂/D₃ Receptor Partial Agonist, Modulates ABCG2-Mediated Multidrug Resistance in Cancer
Noor Hussein1, Charles R Ashby2, Haneen Amawi3
1Department of Pharmacology and Experimental Therapeutics, College of Pharmacy & Pharmaceutical Sciences, University of Toledo, Toledo, OH 43614, USA. noor.hussein@rockets.utoledo.edu.
Abstract:
Multidrug resistance (MDR) is a continuing clinical problem that limits the efficacy of chemotherapy in cancer. The over expression of the ATP-binding cassette (ABC) family G2 (ABCG2) transporter is one of the main mechanisms that mediates MDR in cancer. Molecular modeling data indicated that cariprazine, a dopamine D₂/D₃ receptor partial agonist, had a significant binding affinity for ABCG2 transporter with a Glide XP score of -6.515. Therefore, in this in vitro study, we determined the effect of cariprazine on MDR resulting from the overexpression of ABCG2 transporters. Alone, cariprazine, at concentrations up to 20 μM, did not significantly decrease cell viability. Cariprazine, at concentrations ranging from 1 to 10 μM, did not significantly alter the cytotoxicity of mitoxantrone (MX) in the parental non-small cell cancer cell line, H460 and colon cancer cell S1. However, cariprazine (1⁻20 μM) significantly enhanced the efficacy of ABCG2 substrate antineoplastic drug MX in the ABCG2-overexpressing MDR cell line, H460-MX20 and S1M1-80, by reducing the resistance fold from 28 to 1 and from 93 to 1.33, respectively. Cariprazine, in a concentration-dependent (1⁻20 μM), significantly increased the intracellular accumulation of Rhodamine 123 in S1M1-80. Interestingly, 10 or 20 μM of cariprazine significantly decreased the expression levels of the ABCG2 protein in the colon and lung cancer cell lines, suggesting that cariprazine inhibits both the function and expression of ABCG2 transporters at nontoxic concentrations. Overall, our results suggest that cariprazine, via several distinct mechanisms, can resensitize resistant cancer cells to mitoxantrone.
Insights
Cariprazine, an existing drug, was found to overcome multidrug resistance (MDR) in cancer cells by inhibiting the ABCG2 transporter. This drug resensitized resistant cancer cells to chemotherapy, offering a potential new strategy against MDR.
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- Multidrug resistance (MDR) significantly limits chemotherapy efficacy in cancer treatment.
- Overexpression of the ATP-binding cassette G2 (ABCG2) transporter is a key mechanism mediating MDR.
- Molecular modeling suggested cariprazine binds to ABCG2, indicating potential MDR reversal.
Purpose of the Study:
- To investigate the in vitro effect of cariprazine on MDR mediated by ABCG2 transporters.
- To determine if cariprazine can resensitize cancer cells to chemotherapy drugs like mitoxantrone.
Main Methods:
- Assessed cariprazine's effect on cell viability and cytotoxicity of mitoxantrone in parental and ABCG2-overexpressing cancer cell lines.
- Measured intracellular accumulation of Rhodamine 123 to evaluate ABCG2 transporter function.
- Quantified ABCG2 protein expression levels in response to cariprazine treatment.
Main Results:
- Cariprazine (1–20 μM) enhanced mitoxantrone efficacy in ABCG2-overexpressing cells, reducing resistance folds significantly.
- Cariprazine increased intracellular Rhodamine 123 accumulation in MDR cells.
- Cariprazine decreased ABCG2 protein expression at 10–20 μM in tested cancer cell lines.
Conclusions:
- Cariprazine effectively resensitizes multidrug-resistant cancer cells to mitoxantrone at non-toxic concentrations.
- Cariprazine inhibits both the function and expression of ABCG2 transporters.
- Cariprazine shows potential as an adjuvant therapy to overcome MDR in cancer treatment.
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