Fukutome Mika, Maebayashi Katsuya, Nasu Sachiko, Seki Kaori, Mitsuhashi Norio
Department of Radiology, Tokyo Women's Medical University, School of Medicine, Tokyo, Japan.
Int J Radiat Oncol Biol Phys. 2006 Oct 1;66(2):528-36. doi: 10.1016/j.ijrobp.2006.05.036.
The aims of this study were twofold: (1) to examine the effects of dual inhibition of 2 members of the HER family, the epidermoid growth factor receptor (EGFR) and HER2/neu, by gefitinib (ZD1839) and trastuzumab on radiosensitivity; and (2) to explore the molecular mechanism of radiosensitization especially focusing on the survival signal transduction pathways by using A431 human vulvar squamous carcinoma cells expressing EGFR and HER2/neu.
The effects of inhibitors on the radiation-induced activation of EGFR and/or HER2/neu, and the intracellular proteins that are involved in their downstream signaling, were quantified by the Western blot. Radiosensitizing effects by the blockage of EGFR and/or HER2/neu were determined by a clonogenic assay.
Radiation-induced activation of the EGFR and HER2/neu was inhibited with ZD1839 and/or trastuzumab. ZD1839 also inhibited the radiation-induced phosphorylation of HER2/neu. Radiation in combination with the HER family inhibitors inhibited the activation of Akt and MEK1/2, the downstream survival signaling of the HER family. ZD1839 enhanced radiosensitivity with a dose-modifying factor (DMF) (SF3) of 1.45 and trastuzumab did so with a DMF (SF3) of 1.11. Simultaneous blockade of EGFR and HER2/neu induced a synergistic radiosensitizing effect with a DMF (SF3) of 2.29.
The present data suggest that a dual EGFR and HER2/neu targeting may have potential for radiosensitization in tumors in which both of these pathways are active.
本研究有两个目的:(1)研究吉非替尼(ZD1839)和曲妥珠单抗对表皮生长因子受体(EGFR)和HER2/neu这两个HER家族成员的双重抑制对放射敏感性的影响;(2)通过使用表达EGFR和HER2/neu的A431人外阴鳞状癌细胞,探索放射增敏的分子机制,尤其关注生存信号转导通路。
通过蛋白质免疫印迹法对抑制剂对辐射诱导的EGFR和/或HER2/neu激活以及参与其下游信号传导的细胞内蛋白质的影响进行定量。通过克隆形成试验确定阻断EGFR和/或HER2/neu的放射增敏作用。
ZD1839和/或曲妥珠单抗抑制了辐射诱导的EGFR和HER2/neu激活。ZD1839还抑制了辐射诱导的HER2/neu磷酸化。辐射与HER家族抑制剂联合抑制了HER家族下游生存信号Akt和MEK1/2的激活。ZD1839以1.45的剂量修正因子(DMF)(SF3)增强放射敏感性,曲妥珠单抗以1.11的DMF(SF3)增强放射敏感性。同时阻断EGFR和HER2/neu诱导了协同放射增敏作用,DMF(SF3)为2.29。
目前的数据表明,双重靶向EGFR和HER2/neu可能对这两条通路均活跃的肿瘤具有放射增敏潜力。