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Functional characterization of gefitinib uptake in non-small cell lung cancer cell lines
Authors:Maricla Galetti  Roberta R. Alfieri  Andrea Cavazzoni  Mara Bonelli  Paola Mozzoni  Giuseppe De Palma  Antonio Mutti  Marcello Tiseo  Pier Giorgio Petronini
Affiliation:a Department of Experimental Medicine, University of Parma, Via Volturno 39, 43100 Parma, Italy
b Department of Clinical Medicine, Nephrology and Health Science, Laboratory of Industrial Toxicology, University Hospital of Parma, Italy
c National Institute of Occupational Safety and Prevention (ISPESL), Research Center at the University of Parma, Italy
d Department of Experimental and Applied Medicine, Section of Occupational Medicine and Industrial Hygiene, University of Brescia, Italy
e Pharmaceutical Department, University of Parma, Parma, Italy
f Division of Medical Oncology, University Hospital of Parma, Italy
Abstract:Gefitinib, an inhibitor of epidermal growth factor receptor tyrosine kinase, has been developed and approved for treatment of advanced non-small cell lung cancer (NSCLC).In this study, we investigated the uptake of gefitinib in gefitinib-sensitive and -resistant NSCLC cell lines. The transport system was temperature-dependent, indicative of an active process and sodium- and potential-independent. Moreover, high cell densities and low extracellular pH significantly reduced the uptake of gefitinib. Inhibitors of the human organic cation transporter 1 (hOCT1) significantly decreased gefitinib uptake; however, gefitinib was not a substrate for hOCT1 or hOCT2 in overexpressing HEK293 cells. Interestingly, gefitinib significantly reduced uptake of the hOCT prototypical substrate MPP suggesting that gefitinib may exert an inhibitory effect on the intracellular accumulation of drugs transported by hOCT1 and hOCT2.After 15 min of treatment at 1 μM (the maximum plasma concentration of gefitinib obtained at the clinically relevant dose) gefitinib accumulated within the cell in resistant-cell lines at concentrations similar or even higher than in gefitinib-sensitive cells tending to rule out an alteration in drug uptake as a mechanism of resistance to gefitinib treatment.Moreover, our results suggest that the extrusion of lactate by crowded cells may contribute in decreasing the pH, which in turn can influence the uptake of gefinitib and as a result the inhibition of EGFR autophosphorylation.
Keywords:Lung cancer   EGFR   Gefitinib   Uptake
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