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Core-Shell Magnetic Gold Nanoparticles for Magnetic Field-Enhanced Radio-Photothermal Therapy in Cervical Cancer

机译:核-壳磁性金纳米粒子用于宫颈癌的磁场增强放射光热疗法

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摘要

The combination of radiotherapy (RT) and photothermal therapy (PTT) has been considered an attractive strategy in cervical cancer treatment. However, it remains a challenge to simultaneously enhance the radio-sensitivity of tumor tissue, develop tumor tissue-focused radiation therapies and combine dual therapeutic modalities. In this study, core-shell type magnetic gold (Fe3O4@Au) nanoparticles are exploited to achieve the synergistic efficacy of radio-photothermal therapy in cervical cancer. Fe3O4@Au nanoparticles (NPs) with uniform morphology exhibited superior surface plasmon resonance properties, excellent superparamagnetic properties, good biocompatibility and high photothermal conversion efficiency. For the in vitro tests, a low concentration of Fe3O4@Au NPs after a short period of near-infrared irradiation lead to the time-dependent death of cervical cancer cells. Further, the combination of RT and PTT induced synergistic anti-cancer effects in vitro. More importantly, an external magnetic field could significantly enhance the synergistic efficacy of Fe3O4@Au NPs by improving their internalization. Hence, the reported Fe3O4@Au NPs have the potential to be good nanoagents with excellent magnetic targeting ability for cervical cancer radio-photothermal treatment.
机译:放射疗法(RT)和光热疗法(PTT)的结合已被认为是宫颈癌治疗中的一种有吸引力的策略。然而,同时增强肿瘤组织的放射敏感性,开发针对肿瘤组织的放射疗法以及结合双重治疗方式仍然是挑战。在这项研究中,利用核-壳型磁性金(Fe3O4 @ Au)纳米颗粒在宫颈癌中实现放射光热疗法的协同功效。具有均匀形态的Fe3O4 @ Au纳米粒子(NPs)具有优异的表面等离子体共振特性,优异的超顺磁特性,良好的生物相容性和较高的光热转化效率。对于体外测试,短时间的近红外辐射后低浓度的Fe3O4 @ Au NPs导致宫颈癌细胞的时间依赖性死亡。此外,RT和PTT的组合可在体外诱导协同抗癌作用。更重要的是,外部磁场可以通过改善Fe3O4 @ Au NP的内在化来显着增强其协同功效。因此,已报道的Fe3O4 @ Au NPs有可能成为具有优良磁靶向能力的良好纳米剂,用于宫颈癌的放射光热治疗。

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