Mechanisms of Gefitinib-mediated reversal of tamoxifen resistance in MCF-7 breast cancer cells by inducing ERα re-expression

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作者
Xia Zhang
Bin Zhang
Jie Liu
Jiwei Liu
Changzheng Li
Wei Dong
Shu Fang
Minmin Li
Bao Song
Bo Tang
Zhehai Wang
Yang Zhang
机构
[1] Shandong Cancer Hospital and Institute,Department of Oncology
[2] The First Affiliated Hospital of Dalian Medical University,Department of Oncology
[3] Shandong Cancer Hospital and Institute,Department of Radiation Oncology
[4] Guilin Medical University,Department of Hepatobiliary Surgery
[5] Affiliated Hospital,Department of Oncology
[6] The Second Affiliated Hospital of Dalian Medical University,undefined
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Estrogen receptor (ER)-positive breast cancer patients may turn ER-negative and develop acquired drug resistance, which compromises the efficacy of endocrine therapy. By investigating the phenomenon that gefitinib can re-sensitise tamoxifen (TAM)-resistant MCF-7 breast cancer cells (MCF-7/TAM) to TAM, the present study verified that gefitinib could reverse the acquired drug resistance in endocrine therapy and further explored the underlying mechanism.ERα-negative MCF-7/TAM cells were established. Upon treating the cells with gefitinib, the mRNA and protein levels of ERα and ERβ, as well as the expression of molecules involved in the MAPK pathway, were examined using the RT-PCR and immunocytochemistry. The RT-PCR results showed that the mRNA levels of ERα and ERβ in MCF-7/TAM cells were up-regulated following gefitinib treatment; specifically, ERα was re-expressed and ERβ expression was up-regulated. The expression of molecules involved in the MAPK pathway, including RAS, MEK1/2 and p-ERK1/2, in MCF-7/TAM cells was significantly up-regulated, compared with MCF-7 cells. After the gefitinib treatment, the expression levels of MEK1/2 and p-ERK1/2 were significantly down-regulated. ERα loss is the primary cause for TAM resistance. Gefitinib reverses TAM resistance primarily by up-regulating the ERα mRNA level and inducing the re-expression of ERα. The MAPK pathway plays a key role in ERα re-expression.
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