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A Method for Screening and Validation of Resistant Mutations Against Kinase Inhibitors
Published on: December 7, 2014
Imatinib resistance in multidrug-resistant K562 human leukemic cells
Yanina Assef1, Fernanda Rubio, Georgina Coló
1Laboratorio de Neurofisiología, Instituto de Investigaciones Médicas Alfredo Lanari, Universidad de Buenos Aires, Conicet, Argentina.
Abstract:
The multidrug resistance phenotype (MDR) is one of the major causes of failure in cancer chemotherapy and it is associated with the over-expression of P-glycoprotein (P-gp or MDR1) in tumor cell membranes. A constitutive NF-kappaB activity has been observed in several haematological malignancies and this is associated with its anti-apoptotic role. In the present work, the relationship between NF-kappaB and MDR phenotype was evaluated in wild type K562 human leukemic cells (K562-WT) and in its vincristine-resistant counterpart, K562-Vinc cells. These data showed that K562-Vinc cells, which express an active P-gp, exhibited MDR phenotype. The resistant indexes (IC(50)(K562-Vinc)/IC(50)(K562-WT)) for structurally unrelated drugs like imatinib, doxorubicin and colchicine were 8.0+/-0.3, 2.8+/-0.4 and 44.8+/-8.8, respectively. The imatinib resistance was reversed by P-gp blockade suggesting the involvement of P-gp in imatinib transport. We observed that NF-kappaB was constitutively activated in both cell lines but in a lesser extent in K562-Vinc. The inhibition of NF-kappaB with BAY 11-7082 increased the cytotoxicity of imatinib in K562-Vinc cells but not in K562-WT. Further, the co-administration of imatinib and BAY 11-7082 sensitized multidrug-resistant K562 cells to cell death as detected by increased percentage of annexin V positive cells. The induced cell death in K562-Vinc cells was associated with activation of caspases 9 and 3. Finally, we provide data showing that BAY 11-7082 down-regulates the expression of P-gp suggesting that the activity of NF-kappaB could be functionally associated to this protein in K562 cells. Our results indicate that the vincristine-resistant K562 cells which developed MDR phenotype, exhibited resistance to imatinib associated with a functional P-gp over-expression. This resistance could be partially overcome by the inhibition of NF-kappaB pathway.
Insights
Multidrug resistance in leukemia involves P-glycoprotein (P-gp) and NF-kappaB. Inhibiting NF-kappaB with BAY 11-7082 resensitizes resistant K562 cells to imatinib by down-regulating P-gp, offering a potential therapeutic strategy.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Multidrug resistance (MDR) is a major challenge in cancer chemotherapy, often linked to P-glycoprotein (P-gp) overexpression.
- Constitutive NF-kappaB activity is implicated in hematological malignancies and possesses anti-apoptotic functions.
Purpose of the Study:
- To investigate the relationship between NF-kappaB activity and the MDR phenotype in K562 human leukemic cells.
- To evaluate the potential of inhibiting NF-kappaB to overcome MDR, specifically resistance to imatinib.
Main Methods:
- Comparison of wild-type (K562-WT) and vincristine-resistant (K562-Vinc) K562 cells.
- Assessment of drug resistance indexes for imatinib, doxorubicin, and colchicine.
- Evaluation of NF-kappaB activation and its modulation by BAY 11-7082.
- Analysis of P-gp expression and its role in imatinib resistance.
- Measurement of apoptosis induction via annexin V staining and caspase activation.
Main Results:
- K562-Vinc cells exhibited MDR phenotype with significant resistance to imatinib, doxorubicin, and colchicine, mediated by P-gp.
- NF-kappaB was constitutively active in both cell lines, with lower activity in K562-Vinc cells.
- Inhibition of NF-kappaB by BAY 11-7082 increased imatinib cytotoxicity in K562-Vinc cells and sensitized them to cell death.
- BAY 11-7082 treatment led to the down-regulation of P-gp expression in K562-Vinc cells.
- Induced cell death involved the activation of caspases 9 and 3.
Conclusions:
- Vincristine-resistant K562 cells develop MDR associated with P-gp overexpression, leading to imatinib resistance.
- NF-kappaB pathway activity is functionally linked to P-gp expression in these cells.
- Inhibition of the NF-kappaB pathway offers a potential strategy to partially overcome P-gp-mediated multidrug resistance in leukemia.
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