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MECHANISMS OF ACQUIRED RESISTANCE TO ENDOCRINE THERAPY IN HORMONE-DEPENDENT BREAST CANCER CELLS

机译:激素依赖性乳腺癌细胞对内分泌治疗的耐药性机制

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摘要

Acquired resistance is a major problem limiting the clinical benefit of endocrine therapy. To investigate the mechanisms involved, two in vitro models were developed from MCF-7 cells. Long-term culture of MCF-7 cells in estrogen deprived medium (LTED) mimics aromatase inhibition in patients. Continued exposure of MCF-7 to tamoxifen represents a model of acquired resistance to antiestrogens (TAM-R). Long-term estrogen deprivation results in sustained activation of the ERK MAP kinase and the PI3 kinase/mTOR pathways. Using a novel Ras inhibitor, farnesylthiosalicylic acid (FTS), to achieve dual inhibition of the pathways, we found that the mTOR pathway plays the primary role in mediation of proliferation of LTED cells. In contrast to the LTED model, there is no sustained activation of ERK MAPK but enhanced responsiveness to rapid stimulation induced by E2 and TAM in TAM-R cells. An increased amount of ERα formed complexes with EGFR and c-Src in TAM-R cells, which apparently resulted from extra-nuclear redistribution of ERα. Blockade of c-Src activity drove ERα back to the nucleus and reduced ERα-EGFR interaction. Prolonged blockade of c-Src activity restored sensitivity of TAM-R cells to tamoxifen. Our results suggest that different mechanisms are involved in acquired endocrine resistance and the necessity for individualized treatment of recurrent diseases.
机译:获得性耐药是限制内分泌治疗临床益处的主要问题。为了研究涉及的机制,从MCF-7细胞开发了两个体外模型。在雌激素缺乏培养基(LTED)中长期培养MCF-7细胞可模拟患者体内的芳香化酶抑制作用。 MCF-7持续接触他莫昔芬代表了获得性抗雌激素药(TAM-R)的模型。长期雌激素剥夺导致ERK MAP激酶和PI3激酶/ mTOR途径的持续活化。使用一种新型的Ras抑制剂法呢基硫代水杨酸(FTS)来实现该途径的双重抑制,我们发现mTOR途径在介导LTED细胞增殖中起主要作用。与LTED模型相比,ERK MAPK没有持续激活,但对TAM-R细胞中E2和TAM诱导的快速刺激的反应性增强。在TAM-R细胞中,增加的ERα与EGFR和c-Src形成复合物,这显然是由于ERα的核外重新分布所致。对c-Src活性的阻断将ERα带回到细胞核,并降低了ERα-EGFR相互作用。长期阻断c-Src活性可恢复TAM-R细胞对他莫昔芬的敏感性。我们的结果表明,不同的机制参与获得性内分泌耐药性和复发性疾病的个体化治疗的必要性。

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