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Synergistic effects of cisplatin chemotherapy and gold nanorod-mediated hyperthermia on ovarian cancer cells and tumors

机译:顺铂化疗和金纳米棒介导的高温对卵巢癌细胞和肿瘤的协同作用

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Aim: The synergistic effects of gold nanorod (GNR)-mediated mild hyperthermia (MHT; 42-43 degrees C) and cisplatin (CP) activity was evaluated against chemoresistant SKOV3 cells in vitro and with a tumor xenograft model. Materials & methods: In vitro studies were performed using CP at cytostatic concentrations (5 mu M) and polyethylene glycol-stabilized GNRs, using near-infrared laser excitation for MHT. Results: The amount of polyethylene glycol-GNRs used for environmental MHT was 1 mu g/ml, several times lower than the loadings used in tumor tissue ablation. GNR-mediated MHT increased CP-mediated cytotoxicity by 80%, relative to the projected additive effect, and flow cytometry ana-lysis suggested MHT also enhanced CP-induced apoptosis. In a pilot in vivo study, systemically administered polyethylene glycol-GNRs generated sufficient levels of MHT to enhance CP-induced reductions in tumor volume, despite their heterogeneous distribution in tumor tissue. Conclusion: These studies imply that effective chemotherapies can be developed in combination with low loadings of nanoparticles for localized MHT.
机译:目的:在体外和肿瘤异种移植模型中评估了金纳米棒(GNR)介导的轻度高温(MHT; 42-43摄氏度)和顺铂(CP)活性对化学耐药性SKOV3细胞的协同作用。材料与方法:使用细胞抑制浓度(5μM)的CP和聚乙二醇稳定的GNRs进行体外研究,并使用近红外激光激发MHT。结果:用于环境MHT的聚乙二醇-GNR的量为1μg / ml,比肿瘤组织消融中使用的载量低几倍。相对于预期的累加效应,GNR介导的MHT将CP介导的细胞毒性提高了80%,流式细胞仪分析表明MHT也增强了CP诱导的细胞凋亡。在一项体内试验研究中,尽管它们在肿瘤组织中分布不均,但全身给药的聚乙二醇-GNRs产生了足够水平的MHT以增强CP诱导的肿瘤体积减小。结论:这些研究表明可以结合低载量的局部MHT来开发有效的化学疗法。

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