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Cytocompatible SiC/SiOx nanowires for X-ray-excited photodynamic therapy

机译:细胞相容的SiC / SiOx纳米线,用于X射线激发的光动力疗法

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The development of innovative nanosystems paves the way to multidisciplinary applications at the frontier between materials science and nanomedicine. In this work we present a novel hybrid nanosystem based on cytocompatible inorganic SiC/SiOx core/shell nanowires conjugated via click-chemistry procedures with an organic photosensitizer belonging to the class of porphyrins. We show that the bare nanowires do not elicit either midterm (72 h) or long-term (10 days) cytotoxic activity leading to irreversible cellular damages or death. The hybrid nanosystem upon irradiation with 6 MV X-Rays at low doses (0.4-2 Gy) is able to generate singlet oxygen, acting therefore as an effective agent for X-Ray-excited photodynamic therapy exploitable to treat deep-seated tumors. In-vitro tests on lung adenocarcinoma cells show that the nanosystem enhances the effects of radiation therapy. As evaluated by clonogenic survival assay 12 days after irradiation at a dose of 2 Gy, the cell population is reduced with respect to control cells by about 75%.
机译:创新的纳米系统的发展为材料科学与纳米医学之间前沿的多学科应用铺平了道路。在这项工作中,我们提出了一种新型的杂化纳米系统,其基于通过点击化学程序与属于卟啉类的有机光敏剂共轭的细胞相容性无机SiC / SiOx核/壳纳米线。我们表明,裸露的纳米线不会引起中期(72小时)或长期(10天)的细胞毒性,从而导致不可逆的细胞损伤或死亡。低剂量(0.4-2 Gy)的6 MV X射线辐照后,该杂合纳米系统能够产生单线态氧,因此可作为X射线激发的光动力疗法的有效试剂,可用于治疗深部肿瘤。对肺腺癌细胞的体外测试表明,纳米系统增强了放射治疗的效果。如在以2 Gy的剂量照射后12天通过克隆形成存活分析评估,相对于对照细胞,细胞群体减少了约75%。

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