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Dose enhancement and cytotoxicity of gold nanoparticles in colon cancer cells when irradiated with kilo‐ and mega‐voltage radiation

机译:千伏和兆伏电压辐照在结肠癌细胞中金纳米颗粒的剂量增强和细胞毒性

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摘要

Despite major advances in the field of radiotherapy, healthy tissue damage continues to constrain the dose that can be prescribed in cancer therapy. Gold nanoparticles (GNPs) have been proposed as a solution to minimize radiation‐associated toxicities by enhancing the radiation dose delivered locally to tumor cells. In the current study, we investigated the application of third‐generation GNPs in two‐dimensional (2D) and three‐dimensional (3D) cell cultures and whether there is synergy between the nanoparticles and kilo‐ or mega‐voltage radiation to cause augmented cytotoxicity. The 10‐nm GNPs were found to be nontoxic in both 2D and 3D in vitro cultures of colon cancer cells at concentrations of up to 10–25 µg/ml. There was a significant increase in cell survival fraction reduction following exposure to 1 Gy of kilo‐voltage (18.3%) and 2 Gy of mega‐voltage (35.3%) radiation when the cells were incubated with 50 µg/ml of GNPs. The biocompatibility of the GNPs combined with their substantial synergy with radiation encourages further investigations into their application in targeted cancer treatment.
机译:尽管放射治疗领域取得了重大进展,但是健康的组织损伤仍然限制了癌症治疗中可以规定的剂量。金纳米颗粒(GNP)已被提议作为一种解决方案,可通过提高局部传递给肿瘤细胞的辐射剂量来最大程度地降低与辐射相关的毒性。在当前的研究中,我们研究了第三代GNP在二维(2D)和三维(3D)细胞培养中的应用,以及纳米粒子和千伏或兆伏电压辐射之间是否存在协同作用,从而导致细胞毒性增强。发现10 nm GNPs在浓度高达10–25 µg / ml的结肠癌细胞的2D和3D体外培养物中均无毒。当将细胞与50 µg / ml GNPs孵育时,暴露于1 Gy千伏电压(18.3%)和2 Gy兆伏电压(35.3%)辐射后,细胞存活分数的降低显着增加。 GNP的生物相容性及其与放射线的实质协同作用,促使人们进一步研究其在靶向癌症治疗中的应用。

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