首页> 外文期刊>Cancer radiotherapie: journal de la Soci閠?fran鏰ise de radiotherapie oncologique >In vitro study of a paclitaxel-radiotherapy combination on a human epidermoid tumor cell line
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In vitro study of a paclitaxel-radiotherapy combination on a human epidermoid tumor cell line

机译:紫杉醇-放射疗法联合治疗人表皮样肿瘤细胞系的体外研究

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PURPOSE: Paclitaxel is an agent which stabilizes microtubules, and has been shown to block different cells in the G2/M phase of the cell cycle and thus to modulate their radioresponsiveness. We investigated the radiosensitizing potential of paclitaxel in human head and neck cancer cells. MATERIALS AND METHODS: ZMK-1 cells were incubated with paclitaxel for 3, 9, or 24 h before or during 24 h after irradiation. Paclitaxel concentrations of 70 nM, 7 nM, and 0.7 nM were chosen to obtain equivalent toxicity at the different incubation times: 3 h, 9 h, and 24 h, respectively. Radiation doses ranged from 0 to 8 Gy using 60Co source. Cell survival was measured by a standard clonogenic assay after a 9-day incubation. Flow cytometry was used to measure the capacity of paclitaxel to accumulate cells in the G2/M phase. RESULTS: Paclitaxel alone possessed cytotoxicity dependent on time and concentration. There was a total of 40% of cells accumulated in G2/M after 24-36 h. When combined with radiation, the 9 h preincubation resulted in a radiosensitization. The 3 h pre-incubation as well as the 24 h post-incubation resulted in an infra-additive effect. CONCLUSION: In our cells a radiosensitizing effect of paclitaxel could not be demonstrated unambiguously. The blockage of the cells in the G2/M phase is not the only mechanism to explain the potential radiosensitization of paclitaxel.
机译:用途:紫杉醇是稳定微管的药物,已显示在细胞周期的G2 / M期阻断不同细胞,从而调节其放射反应性。我们研究了紫杉醇在人头和颈部癌细胞中的放射增敏潜力。材料与方法:ZMK-1细胞与紫杉醇在照射前或照射后24 h孵育3、9或24 h。选择紫杉醇的浓度分别为70 nM,7 nM和0.7 nM,以在不同的孵育时间(分别为3 h,9 h和24 h)获得同等的毒性。使用60Co光源的辐射剂量范围为0至8 Gy。培养9天后,通过标准克隆形成测定法测量细胞存活率。流式细胞仪用于测量紫杉醇在G2 / M期中积累细胞的能力。结果:仅紫杉醇具有取决于时间和浓度的细胞毒性。 24-36小时后,总共有40%的细胞积聚在G2 / M中。当与辐射结合时,预孵育9小时会导致放射增敏作用。孵育前3 h和孵育后24 h产生亚加成作用。结论:在我们的细胞中,紫杉醇的放射增敏作用无法明确显示。 G2 / M期细胞的阻滞不是解释紫杉醇潜在放射增敏作用的唯一机制。

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