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Optimal scheduling of the nanoparticle-mediated cancer photo-thermo-radiotherapy

机译:纳米粒子介导的癌症光学热放射疗法的最佳调度

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摘要

Maximal synergistic effect between photothermal therapy and radiotherapy (RT) may be achieved when the interval between these two modalities is optimal. In this study, we tried to determine the optimal schedule of the combined regime of RT and nano-photothermal therapy (NPTT), based on the cell cycle distribution and kinetics of cell death. To this end, alginate-coated iron oxide-gold core-shell nanoparticles (Fe3O4@Au/Alg NPs) were synthesized, characterized, and their photo-radio sensitization potency was evaluated on human nasopharyngeal cancer KB cells. Our results demonstrated that synthesized NPs have a good potential in radiotherapy and nearinfrared (NIR) photothermal therapy. However, results from flow cytometry analysis indicated that a major portion of KB cells were accumulated in the most radiosensitive phases of cell cycle (G2/M) 24 h after NPTT. Moreover, the maximal synergistic anticancer efficacy (12.3% cell viability) was observed when RT was applied 24 h following the administration of NPTT (NPs [30 mu g/mL, 4 h incubation time] + Laser [808 nm, 1 W/cm(2), 5 min] + RT [6 Gy]). It is noteworthy that apoptosis was the dominant cell death pathway in the group of cells treated by combination of NPTT and RT. This highly synergistic anticancer efficacy provides a mechanistic basis for Fe3O4@Au/Alg NPs-mediated photothermal therapy combined with RT. Knowing such a basis is helpful to promote novel nanotechnology cancer treatment strategies.
机译:当这两种方式之间的间隔是最佳的时,可以实现光热疗和放射疗法(RT)之间的最大协同效应。在这项研究中,我们试图根据细胞周期分布和细胞死亡动力学确定RT和纳米光热疗的组合制度(NPTT)的最佳时间表。为此,合成了藻酸涂层涂层氧化铁 - 金核 - 壳纳米粒子(Fe3O4 @ Au / alg NPS),其特征在于,对其光电敏化效力进行了评估对人鼻咽癌KB细胞。我们的结果表明,合成的NPS在放射疗法和附近的潜在潜力和接近的(NIR)的光热疗法。然而,流式细胞术分析的结果表明,在NPTT之后,在细胞周期(G2 / m)24h的最阳极敏感相中累积了Kb细胞的主要部分。此外,当施用NPTT(NPS [30μg/ ml,4小时孵育时间] +激光[808nm,1w / cm后,在施加24小时时,观察到最大协同抗癌疗效(12.3%的细胞活力)。 (2),5分钟] + RT [6 GY])。值得注意的是,细胞凋亡是通过NPTT和室温组合处理的细胞组中的主要细胞死亡途径。这种高度协同的抗癌疗效为FE3O4 @ AU / ALG NPS介导的光热疗与RT提供了一种机制基础。了解这种基础有助于促进新型纳米技术癌症治疗策略。

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