Cetuximab prevents methotrexate-induced cytotoxicity in vitro through epidermal growth factor dependent regulation of renal drug transporters

Publication date

2017-06-05

Authors

Caetano-Pinto, PedroISNI 0000000506342850
Jamalpoor, AmerISNI 0000000492899198
Ham, Janneke
Goumenou, Anastasia
Mommersteeg, Monique
Pijnenburg, Dirk
Ruijtenbeek, RobISNI 0000000397000615
Sánchez-Romero, NataliaISNI 0000000526381419
van Zelst, Bertrand
Heil, Sandra

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Abstract

The combination of methotrexate with epidermal growth factor receptor (EGFR) recombinant antibody, cetuximab, is currently being investigated in treatment of head and neck carcinoma. As methotrexate is cleared by renal excretion, we studied the effect of cetuximab on renal methotrexate handling. We used human conditionally immortalized proximal tubule epithelial cells over-expressing either organic anion transporter 1 or 3 (ciPTEC-OAT1/ciPTEC-OAT3) to examine OAT1 and OAT3, and the efflux pumps breast cancer resistance protein (BCRP), multidrug resistance protein 4 (MRP4) and P-glycoprotein (P-gp) in methotrexate handling upon EGF and/or cetuximab treatment. Protein kinase microarrays and knowledge-based pathway analysis were used to predict EGFR-mediated transporter regulation. Cytotoxic effects of methotrexate were evaluated using the dimethylthiazol bromide (MTT) viability assay. Methotrexate inhibited OAT-mediated fluorescein uptake, and decreased efflux of Hoechst33342 and glutathione-methylfluorescein (GS-MF), suggesting involvement of OAT1/3, BCRP and MRP4 in transepithelial transport, respectively. Cetuximab reversed the EGF-increased expression of OAT1 and BCRP, as well as their membrane expressions and transport activities, while MRP4 and P-gp were increased. Pathway analysis predicted cetuximab-induced modulation of PKC and PI3K pathways downstream EGFR/ERBB2/PLCg. Pharmacological inhibition of ERK decreased expression of OAT1 and BCRP, while P-gp and MRP4 were increased. AKT inhibition reduced all transporters. Exposure to methotrexate for 24 hours led to a decreased viability, an effect that was reversed by cetuximab. In conclusion, cetuximab downregulates OAT1 and BCRP while upregulating P-gp and MRP4 through an EGFR-mediated regulation of PI3K-AKT and MAPKK-ERK pathways. Consequently, cetuximab attenuates methotrexate-induced cytotoxicity, which opens possibilities for further research into nephroprotective co-medication therapies.

Keywords

combination therapy, drug disposition, drug transporters, kinase signaling, renal proximal tubule, SDG 3 - Good Health and Well-being

Citation

Caetano-Pinto, P, Jamalpoor, A, Ham, J, Goumenou, A, Mommersteeg, M, Pijnenburg, D, Ruijtenbeek, R, Sánchez-Romero, N, van Zelst, B, Heil, S, Jansen, J, Wilmer, M J, van Herpen, C M L & Masereeuw, R 2017, 'Cetuximab prevents methotrexate-induced cytotoxicity in vitro through epidermal growth factor dependent regulation of renal drug transporters', Molecular Pharmaceutics, vol. 14, no. 6, pp. 2147-2157. https://doi.org/10.1021/acs.molpharmaceut.7b00308