School of Physics and Sydney Nano Institute, University of Sydney, Sydney, NSW 2006, Australia.
Phys Med Biol. 2018 Jan 9;63(2):02TR01. doi: 10.1088/1361-6560/aa99ce.
Enhancement of radiation effects by high-atomic number nanoparticles (NPs) has been increasingly studied for its potential to improve radiotherapeutic efficacy. The underlying principle of NP radio-enhancement is the potential to release copious electrons into a nanoscale volume, thereby amplifying radiation-induced biological damage. While the vast majority of studies to date have focused on gold nanoparticles with photon radiation, an increasing number of experimental, theoretical and simulation studies have explored opportunities offered by other NPs (e.g. gadolinium, platinum, iron oxide, hafnium) and other therapeutic radiation sources such as ion beams. It is thus of interest to the research community to consolidate findings from the different studies and summarise progress to date, as well as to identify strategies that offer promising opportunities for clinical translation. This is the purpose of this Topical Review.
高原子序数纳米颗粒(NPs)增强辐射效应的研究越来越多,因为它有可能提高放射治疗的疗效。NP 放射增强的基本原理是有可能将大量电子释放到纳米级体积中,从而放大辐射引起的生物损伤。尽管迄今为止绝大多数研究都集中在金纳米颗粒与光子辐射上,但越来越多的实验、理论和模拟研究都在探索其他 NPs(如钆、铂、氧化铁、铪)和其他治疗性辐射源(如离子束)带来的机遇。因此,研究界有兴趣将不同研究的结果进行整合和总结,以了解迄今为止的进展,并确定具有临床转化前景的策略。这就是本专题评论的目的。