[No authors listed]
Gefitinib is currently the preferred treatment for nonâsmall cell lung cancer (NSCLC) patients with epidermal growth factor receptor (EGFR)âactivating mutation. However, some patients gradually develop acquired resistance after receiving treatment. In addition to secondary T790M mutation, the remaining mechanisms contributing to nonâT790M mutations need to be explored. In the present study, NSCLCâderived HCC827 and PCâ9 cells and the corresponding gefitinibâresistant cell lines (HCC827GR and PC9GR) were utilized. Nextâgeneration DNA sequencing was performed on the HCC827GR and PC9GR cells. Under AXL receptor tyrosine kinase (AXL) knockdown or miRâ625â3p overexpressing conditions, a cell growth inhibition assay was performed to evaluate gefitinib sensitivity. Wound healing and Transwell assays were used to examine the migratory and invasive abilities of the cells. Moreover, we also carried out western blot analysis to detect the altered downstream signaling pathway. Our study revealed markedly decreased miRâ625â3p expression in the HCC827GR cell line, while its overexpression partly reversed gefitinib resistance. Integrated analysis based on Targetscan website showed that AXL can be potentially targeted by miRâ625â3p and we further verified the hypothesis via dualâluciferase reporter assays. Mechanistic analysis revealed that TGFâβ1âinduced EMT may contribute to the miRâ625â3p/AXL axisâmediated gefitinib resistance. Our data demonstrated that miRâ625â3p contributes to the acquired resistance of gefitinib, which may provide novel insight to combat resistance to EGFRâTKIs.
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