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Determining the Radiation Enhancement Effects of Gold Nanoparticles in Cells in a Combined Treatment with Cisplatin and Radiation at Therapeutic Megavoltage Energies

机译:在治疗性兆伏电压能量下联合使用顺铂和辐射测定细胞中金纳米粒子的辐射增强效果

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Combined use of chemotherapy and radiation therapy is commonly used in cancer treatment, but the toxic effects on normal tissue are a major limitation. This study assesses the potential to improve radiation therapy when combining gold nanoparticle (GNP) mediated radiation sensitization with chemoradiation compared to chemoradiation alone. Incorporation of GNPs with 2 Gy, 6 MV (megavoltage) radiation resulted in a 19 ± 6% decrease in survival of MDA-MB-231 cells. Monte-Carlo simulations were performed to assess dosimetric differences in the presence of GNPs in radiation. The results show that physics dosimetry represents a small fraction of the observed effect. The survival fraction of the cells exposed to GNPs, cisplatin, and radiation was 0.16 ± 0.007, while cells treated with cisplatin and radiation only was 0.23 ± 0.011. The presence of GNPs resulted in a 30 ± 6% decrease in the survival, having an additive effect. The concentration of the GNPs and free drug used for this study was 0.3 and 435 nM, respectively. These concentrations are relatively lower and achievable in an in vivo setting. Hence, the results of our study would accelerate the incorporation of GNP-mediated chemoradiation into current cancer therapeutic protocols in the near future.
机译:化学疗法和放射疗法的组合使用通常用于癌症治疗,但是对正常组织的毒性作用是主要限制。这项研究评估了将金纳米粒子(GNP)介导的放射增敏与化学放射治疗相结合的潜力,与单独的化学放射治疗相比,可以改善放射治疗的潜力。将GNP掺入2 Gy,6 MV(兆电压)辐射导致MDA-MB-231细胞存活降低19±6%。进行了蒙特卡洛模拟,以评估辐射中存在GNP时的剂量学差异。结果表明,物理剂量学仅占所观察到效果的一小部分。暴露于GNP,顺铂和放射线的细胞的存活分数为0.16±0.007,而仅接受顺铂和放射线处理的细胞的存活率为0.23±0.011。 GNP的存在导致存活率下降30±6%,具有累加作用。用于本研究的GNPs和游离药物的浓度分别为0.3和435 nM。这些浓度相对较低并且在体内环境中可达到。因此,我们的研究结果将在不久的将来加速将GNP介导的化学放射纳入当前的癌症治疗方案中。

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