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Evaluation of cytotoxicity and radiation enhancement using 1.9nm gold particles: Potential application for cancer therapy

机译:使用1.9nm金粒子评估细胞毒性和增强辐射:在癌症治疗中的潜在应用

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High atomic number (Z) materials such as gold preferentially absorb kilovoltage x-rays compared to soft tissue and may be used to achieve local dose enhancement in tumours during treatment with ionizing radiation. Gold nanoparticles have been demonstrated as radiation dose enhancing agents invivo and invitro. In the present study, we used multiple endpoints to characterize the cellular cytotoxic response of a range of cell lines to 1.9nm gold particles and measured dose modifying effects following transient exposure at low concentrations. Gold nanoparticles caused significant levels of cell type specific cytotoxicity, apoptosis and increased oxidative stress. When used as dose modifying agents, dose enhancement factors varied between the cell lines investigated with the highest enhancement being 1.9 in AGO-1522B cells at a nanoparticle concentration of 100νgml~(- 1). This study shows exposure to 1.9nm gold particles to induce a range of cell line specific responses including decreased clonogenic survival, increased apoptosis and induction of DNA damage which may be mediated through the production of reactive oxygen species. This is the first study involving 1.9nm nanometre sized particles to report multiple cellular responses which impact on the radiation dose modifying effect. The findings highlight the need for extensive characterization of responses to gold nanoparticles when assessing dose enhancing potential in cancer therapy.
机译:与软组织相比,高原子序数(Z)材料(例如金)优先吸收千伏X射线,可用于在电离辐射治疗期间实现肿瘤局部剂量的增强。金纳米颗粒已被证明是体内和体外辐射剂量增强剂。在本研究中,我们使用多个终点来表征一系列细胞系对1.9nm金颗粒的细胞毒性反应,并在低浓度短暂暴露后测量剂量调节作用。金纳米颗粒引起显着水平的细胞类型特异性细胞毒性,凋亡和氧化应激增加。当用作剂量调节剂时,剂量增强因子在所研究的细胞系之间变化,在纳米粒子浓度为100νgml〜(-1)的AGO-1522B细胞中,最高增强因子为1.9。这项研究表明,暴露于1.9nm的金颗粒可诱导一系列细胞系特异性反应,包括降低克隆形成存活,增加凋亡和诱导DNA损伤,这可能是通过活性氧的产生来介导的。这是第一项涉及1.9nm纳米大小的颗粒的研究,报告了多种细胞反应,这些反应会影响辐射剂量调节效果。这些发现突出表明,在评估癌症治疗中的剂量增加潜力时,需要对金纳米颗粒的反应进行广泛表征。

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