首页> 外文期刊>Alborz University Medical Journal >Treatment of Prostate Cancer Cells (DU145) with Gamma-Ray Radiation and Silver Nano Particles
【24h】

Treatment of Prostate Cancer Cells (DU145) with Gamma-Ray Radiation and Silver Nano Particles

机译:γ射线和银纳米粒子治疗前列腺癌细胞(DU145)

获取原文
       

摘要

Background : Prostate cancer is the second most common cancer in America which causing great harm and waste cost. Furthermore almost more prostate cancer treatments are ineffective. Purpose of this study was to evaluate the effects of therapy and the rate of increase of the absorbed dose of gamma radiation with silver nano particles in treatment of prostate cancer. Materials and Methods: DU145 cell line originating from Human prostate cancer was purchased from Pasteur Institute. After thawing of defreezed samples, cells were incubated with DMEM medium and 15% FBS Confluency FBS serum was added. For preventing contamination amphotericin B in 25 μM/ml was added. Cells were incubated over a period of 3 to 5 days to reach a good Confluency Then cells divided into 4 groups .?Tentatively assigned to the control group, the second experimental group treated with gamma irradiation at a doses of 2, 6 and 10 Gy, the third group treated with 53 μg/ml ? g/mlμ 53 silver nano particles. The fourth group includes simultaneous treatment with gamma doses and silver nano particle. ?????? ? Cell groups studied by staining with trypan blue as well as by MTT assay (ELISA) reader. Results: The results showed the use of gamma rays and silver nano particles caused a significant reduction in the number of cancer cells in the treated groups compared to the other treatment groups and a control group. Using of silver nano particles as a radio sensitizer and radiation therapy in prostate cancer cell lines DU145 resulted in the increase of the gamma-ray photon energies of 6 and 10 Gy. Discussion: T he gamma photon radiation to the tumor cells were incubated nano particle probability Photoelectric process as a process when handling the extremely high energy gamma photons hitting the silver nano particles to cancer cells, photoelectron and Auger electrons (Auger Electrons ) and secondary electrons produced by secondary particles can be. It will not be very effective, leading to failures in the field of DNA damage and cell death.
机译:背景:前列腺癌是美国第二大常见癌症,造成巨大的伤害和浪费。此外,几乎更多的前列腺癌治疗无效。这项研究的目的是评估银纳米颗粒在前列腺癌治疗中的治疗效果和伽马射线吸收剂量增加的速率。材料和方法:源自人前列腺癌的DU145细胞系购自巴斯德研究所。解冻的样品解冻后,将细胞与DMEM培养基一起孵育,并添加15%FBS Confluency FBS血清。为了防止污染,添加了25μM/ ml的两性霉素B。将细胞孵育3至5天以达到良好的汇合度,然后将细胞分为4组。暂定为对照组,第二个实验组以2、6和10 Gy的剂量进行γ射线处理,第三组用53μg/ ml? g /mlμ53银纳米颗粒。第四组包括同时接受伽马剂量和银纳米粒子治疗。 ?????? ?通过用锥虫蓝染色以及MTT分析(ELISA)读取器研究细胞群。结果:结果表明,与其他治疗组和对照组相比,使用伽马射线和银纳米颗粒可显着减少治疗组中癌细胞的数量。在前列腺癌细胞系DU145中使用银纳米颗粒作为放射增敏剂和放射疗法可导致6 Gy和10 Gy的伽马射线光子能量增加。讨论:伽马光子辐射到肿瘤细胞的孵育是纳米粒子概率。光电过程是处理极高能伽马光子撞击银纳米粒子到达癌细胞,光电子和俄歇电子(Auger Electrons)以及产生的二次电子的过程通过二次粒子即可。它不会非常有效,导致DNA损伤和细胞死亡领域的失败。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号