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Toxicological and efficacy assessment of post-transition metal (Indium) phthalocyanine for photodynamic therapy in neuroblastoma

机译:过渡金属酞菁酞菁对神经母细胞瘤光动力治疗的毒理学和功效评估

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摘要

Metallo-phthalocyanines due to their photophysical characteristics as high yield of triplet state and long lifetimes, appear to be good candidates for photodynamic therapy (PDT). Complexes with diamagnetic metals such as Zn2+, Al3+ Ga3+ and In3+meet such requirements and are recognized as potential PDT agents. Clinically, Photofrin® PDT in neuroblastoma therapy proved in pediatric subjects diagnosed with progressive/recurrent malignant brain tumors increased progression free survival and overall survival outcome. Our study focuses on the dark toxicity testing of a Chloro-Indium-phthalocyanine photosensitizer (In-Pc) upon SH-SY5Y neuroblastoma cell line and its experimental in vitro PDT. Upon testing, In-Pc has shown a relatively high singlet oxygen quantum yield within the cells subjected to PDT (0.553), and 50 μg/mL IC50. Classical toxicological and efficacy assessment were completed with dynamic cellular impedance measurement methodology. Using this technology we have shown that long time incubation of neuroblastoma cell lines in In-Pc (over 5 days) does not significantly hinder cell proliferation when concentration are ≤ 10 μg/mL. When irradiating neuroblastoma cells loaded with non-toxic concentration of In-Pc, 50% of cells entered apoptosis. Transmission electron microscopy has confirmed apoptotic characteristics of cells. Investigating the proliferative capacity of the in vitro treated cells we have shown that cells that “escape” the irradiation protocol, present a reduced proliferative capacity. In conclusion, In-Pc represents another photosensitizer that can display sound PDT properties enhancing neuroblastoma therapy armentarium.
机译:金属酞菁由于其光物理特性,如三重态的高产率和长寿命,似乎是光动力疗法(PDT)的良好候选者。与抗磁性金属如Zn 2 + ,Al 3 + Ga 3 + 和In 3 + 要求,并被认为是潜在的PDT代理。临床上,在诊断为进行性/复发性恶性脑肿瘤的儿科患者中,Photofrin ® PDT在成神经细胞瘤治疗中得到了证明,可提高无进展生存期和总生存期。我们的研究集中于氯铟铟酞菁光敏剂(In-Pc)对SH-SY5Y神经母细胞瘤细胞系的暗毒性测试及其体外PDT实验。经测试,In-Pc在经受PDT(0.553)和50μg/ mL IC50的细胞中显示出较高的单线态氧量子产率。用动态细胞阻抗测量方法完成了经典的毒理学和功效评估。使用这项技术,我们已经表明,当浓度≤10μg/ mL时,在In-Pc中长时间培养神经母细胞瘤细胞系(超过5天)不会显着阻碍细胞增殖。当用无毒浓度的In-Pc照射神经母细胞瘤细胞时,有50%的细胞进入凋亡状态。透射电子显微镜已证实细胞的凋亡特征。研究体外处理细胞的增殖能力,我们已经发现“逃避”辐照方案的细胞呈现出降低的增殖能力。总之,In-Pc代表了另一种光敏剂,可以显示出良好的PDT特性,从而增强了神经母细胞瘤治疗药的水平。

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