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Evaluation of radiosensitization effects by platinum nanodendrites for 6 MV photon beam radiotherapy

机译:铂纳米型抗敏感作用评价6mV光子束放射治疗

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Therapeutic effects of high Z based nanoparticles have been the subject of growing interest to enhance the radiotherapy efficacy. In this study, platinum nanodendrites (PtNDs) were synthesized via chemical reduction method and characterized to be suitable for application as radiosensitizer. Cytotoxicity test on different sizes and concentration of PtNDs were conducted in-vitro on HeLa cells. Radiosensitization effects were measured by clonogenic cell survival assay at 0.1 mM PtNDs concentration irradiated under 6 MV photon beams. PtNDs show excellent biocompatibility and exhibit radiosensitization for all sizes. The Sensitization Enhancement Ratio (SER) quantified for 29, 36, 42 and 52 nm PtNDs are 1.96, 2.31, 2.27 and 1.77 respectively. The SER obtained depicts a dependency of radiosensitization effects on PtNDs sizes. In conclusion, these results demonstrate the potential applicability of PtNDs as novel radiosensitizer in radiotherapy particularly for treatment using megavoltage photon beams.
机译:高Z基纳米颗粒的治疗效果是增强放射治疗疗效的兴趣的主题。在该研究中,通过化学还原方法合成铂纳米二核(PTND),其特征是适用于施用剂作为辐射敏化剂。在Hela细胞上在体外进行不同尺寸和PTND浓度的细胞毒性试验。通过在6mV光子束下照射的0.1mM PTNDS浓度下的克隆致细胞存活测定测量辐射敏化效应。 PTNDS显示出优异的生物相容性,并表现出各种尺寸的放射敏化。定量为29,36,42和52nm PTND的敏化增强比(Ser)分别为1.96,2.31,2.27和1.77。所获得的Ser描绘了放射敏化效应对PTNDS尺寸的依赖性。总之,这些结果表明,PTNDS在放射疗法中的新型辐射敏化剂的潜在适用性,特别是用于使用巨伏光子梁的处理。

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