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ABCB1 as predominant resistance mechanism in cells with acquired SNS-032 resistance
Nadine Löschmann1, Martin Michaelis2, Florian Rothweiler1
1Institut für Medizinische Virologie, Klinikum der Goethe-Universität, 60596 Frankfurt am Main, Germany.
Abstract:
The CDK inhibitor SNS-032 had previously exerted promising anti-neuroblastoma activity via CDK7 and 9 inhibition. ABCB1 expression was identified as major determinant of SNS-032 resistance. Here, we investigated the role of ABCB1 in acquired SNS-032 resistance. In contrast to ABCB1-expressing UKF-NB-3 sub-lines resistant to other ABCB1 substrates, SNS-032-adapted UKF-NB-3 (UKF-NB-3rSNS- 032300nM) cells remained sensitive to the non-ABCB1 substrate cisplatin and were completely re-sensitized to cytotoxic ABCB1 substrates by ABCB1 inhibition. Moreover, UKF-NB-3rSNS-032300nM cells remained similarly sensitive to CDK7 and 9 inhibition as UKF-NB-3 cells. In contrast, SHEPrSNS-0322000nM, the SNS-032-resistant sub-line of the neuroblastoma cell line SHEP, displayed low level SNS-032 resistance also when ABCB1 was inhibited. This discrepancy may be explained by the higher SNS-032 concentrations that were used to establish SHEPrSNS-0322000nM cells, since SHEP cells intrinsically express ABCB1 and are less sensitive to SNS-032 (IC50 912 nM) than UKF-NB-3 cells (IC50 153 nM). In conclusion, we show that ABCB1 expression represents the primary (sometimes exclusive) resistance mechanism in neuroblastoma cells with acquired resistance to SNS-032. Thus, ABCB1 inhibitors may increase the SNS-032 efficacy in ABCB1-expressing cells and prolong or avoid resistance formation.
Insights
ABCB1 transporter mediates acquired resistance to the CDK inhibitor SNS-032 in neuroblastoma cells. Inhibiting ABCB1 may restore SNS-032 sensitivity and prevent resistance, improving treatment efficacy.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Cyclin-dependent kinase (CDK) inhibitor SNS-032 shows anti-neuroblastoma activity by inhibiting CDK7 and CDK9.
- ABCB1 transporter expression is a key factor in neuroblastoma cell resistance to SNS-032.
Purpose of the Study:
- To investigate the role of ABCB1 in acquired resistance to SNS-032 in neuroblastoma.
- To determine if ABCB1 inhibition can overcome SNS-032 resistance.
Main Methods:
- Developed SNS-032-resistant neuroblastoma cell lines (UKF-NB-3rSNS-032 and SHEPrSNS-032).
- Assessed sensitivity to SNS-032, cisplatin, and other ABCB1 substrates.
- Evaluated the effect of ABCB1 inhibition on SNS-032 resistance.
Main Results:
- SNS-032-resistant cells (UKF-NB-3rSNS-032) remained sensitive to cisplatin, indicating ABCB1-mediated resistance.
- ABCB1 inhibition fully restored sensitivity to ABCB1 substrates in resistant cells.
- A distinct resistant sub-line (SHEPrSNS-032) showed partial resistance even with ABCB1 inhibition, potentially due to higher drug concentrations used in adaptation.
Conclusions:
- ABCB1 expression is the primary mechanism of acquired SNS-032 resistance in neuroblastoma.
- Co-administration of ABCB1 inhibitors could enhance SNS-032 efficacy and prevent resistance in ABCB1-expressing neuroblastoma cells.
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