TY - JOUR
T1 - Folates provoke cellular efflux and drug resistance of substrates of the multidrug resistance protein 1 (MRP1)
AU - Hooijberg, Jan Hendrik
AU - Jansen, Gerrit
AU - Kathmann, Ietje
AU - Pieters, Rob
AU - Laan, Adrie C.
AU - Van Zantwijk, Ina
AU - Kaspers, Gertjan J.L.
AU - Peters, Godefridus J.
N1 - Funding Information:
Acknowledgments this study was supported by the Dutch Cancer Society (grant nKB-VU 2000-2237).
PY - 2014/5
Y1 - 2014/5
N2 - Cellular folate concentration was earlier reported to be a critical factor in the activity and expression of the multidrug resistance protein MRP1 (ABCC1). Since MRP1 mediates resistance to a variety of therapeutic drugs, we investigated whether the cellular folate concentration influences the MRP1-mediated cellular resistance against drugs. As a model system, we used the human ovarian carcinoma cell line 2008wt, and its stably MRP1/ABCC1-transfected subline 2008/MRP1. These cell types have a moderate and high expression of MRP1, respectively. In folate-deprived 2008/MRP1 cells, the MRP1-mediated efflux of its model substrate calcein decreased to ∼55 % of the initial efflux rate under folate-rich conditions. In 2008wt cells, only a small decrease in efflux was observed. Folate depletion for 5-10 days markedly increased (∼500 %) cellular steady-state accumulation of calcein in 2008/MRP1 cells and moderately in 2008wt cells. A subsequent short (24 h) exposure to 2.3 μM l-leucovorin decreased calcein levels again in MRP1-overexpressing cells. Folate deprivation markedly increased growth inhibitory effects of the established MRP1 substrates daunorubicin (∼twofold), doxorubicin (∼fivefold), and methotrexate (∼83-fold) in MRP1-overexpressing cells, proportional to MRP1 expression. In conclusion, this study demonstrates that increased cellular folate concentrations induce MRP1/ABCC1-related drug efflux and drug resistance. These results have important implications in the understanding of the role of MRP1 and its homologs in clinical drug resistance.
AB - Cellular folate concentration was earlier reported to be a critical factor in the activity and expression of the multidrug resistance protein MRP1 (ABCC1). Since MRP1 mediates resistance to a variety of therapeutic drugs, we investigated whether the cellular folate concentration influences the MRP1-mediated cellular resistance against drugs. As a model system, we used the human ovarian carcinoma cell line 2008wt, and its stably MRP1/ABCC1-transfected subline 2008/MRP1. These cell types have a moderate and high expression of MRP1, respectively. In folate-deprived 2008/MRP1 cells, the MRP1-mediated efflux of its model substrate calcein decreased to ∼55 % of the initial efflux rate under folate-rich conditions. In 2008wt cells, only a small decrease in efflux was observed. Folate depletion for 5-10 days markedly increased (∼500 %) cellular steady-state accumulation of calcein in 2008/MRP1 cells and moderately in 2008wt cells. A subsequent short (24 h) exposure to 2.3 μM l-leucovorin decreased calcein levels again in MRP1-overexpressing cells. Folate deprivation markedly increased growth inhibitory effects of the established MRP1 substrates daunorubicin (∼twofold), doxorubicin (∼fivefold), and methotrexate (∼83-fold) in MRP1-overexpressing cells, proportional to MRP1 expression. In conclusion, this study demonstrates that increased cellular folate concentrations induce MRP1/ABCC1-related drug efflux and drug resistance. These results have important implications in the understanding of the role of MRP1 and its homologs in clinical drug resistance.
KW - Anthracyclines
KW - Calcein
KW - Folate
KW - Methotrexate
KW - MRP1
KW - Multidrug resistance
UR - http://www.scopus.com/inward/record.url?scp=84900799034&partnerID=8YFLogxK
U2 - 10.1007/s00280-014-2421-0
DO - 10.1007/s00280-014-2421-0
M3 - Article
C2 - 24595806
AN - SCOPUS:84900799034
SN - 0344-5704
VL - 73
SP - 911
EP - 917
JO - Cancer Chemotherapy and Pharmacology
JF - Cancer Chemotherapy and Pharmacology
IS - 5
ER -