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Surface-ligand effect on radiosensitization of ultrasmall luminescent gold nanoparticles

机译:表面配体对超小发光金纳米粒子放射增敏的影响

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摘要

Gold nanoparticles (AuNPs) could serve as potential radiotherapy sensitizers because of their exceptional biocompatibility and high-Z material nature; however, since in vitro and in vivo behaviors of AuNPs are determined not only by their particle size but also by their surface chemistries, whether surface ligands can affect their radiosensitization has seldom been investigated in the radiosensitization of AuNPs. By conducting head-to-head comparison on radiosensitization of two kinds of ultrasmall (~2 nm) near-infrared (NIR) emitting AuNPs that are coated with zwitterionic glutathione and neutral polyethylene glycol (PEG) ligands, respectively, we found that zwitterionic glutathione coated AuNPs (GS-AuNPs) can reduce survival rates of MCF-7 cells under irradiation of clinically used megavoltage photon beam at low dosage of ~2.25 Gy. On the other hand, PEG-AuNPs can serve as a radiation-protecting agent and enabled MCF-7 cells more resistant to the irradiation, clearly indicating the key role of surface chemistry in radiosensitization of AuNPs. More detailed studies suggested that such difference was independent of cellular uptake and its efficiency, but might be related to the ligand-induced difference in photoelectron generation and/or interactions between AuNPs and X-ray triggered reactive oxygen species (ROS).
机译:金纳米颗粒(AuNPs)由于其出色的生物相容性和高Z材料性质而可以用作潜在的放射治疗敏化剂;但是,由于AuNPs的体外和体内行为不仅取决于其粒径,还取决于其表面化学性质,因此在AuNPs的放射增敏中很少研究表面配体是否会影响其放射增敏作用。通过对分别涂有两性离子型谷胱甘肽和中性聚乙二醇(PEG)配体的两种超小(〜2 nm)发射近红外(NIR)的AuNP的放射增敏进行面对面的比较,我们发现两性离子型谷胱甘肽包被的AuNPs(GS-AuNPs)可以降低临床使用的兆伏光子束在〜2.25 Gy的低剂量照射下MCF-7细胞的存活率。另一方面,PEG-AuNPs可以用作辐射防护剂,并使MCF-7细胞对辐射具有更强的抵抗力,清楚地表明了表面化学在AuNPs放射增敏中的关键作用。更详细的研究表明,这种差异与细胞摄取及其效率无关,但可能与配体诱导的光电子生成差异和/或AuNP与X射线触发的活性氧(ROS)之间的相互作用有关。

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