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The Role of Carbon Nanotubes in Enhancing the Effects of Chemotherapeutic Agents in Cancer Treatment

机译:碳纳米管在增强化学治疗剂在癌症治疗中的作用中的作用

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Nanotoxicology is an important field of study that fills the knowledge gap concerning the introduction of nanomaterials into human cells, their interactions with biological systems, and the assessment of their risks to living organisms. In this study apoptosis and topoisomerase II-mediated DNA breakeages in human cervical cancer cells (HeLa cells) were effectively induced by the commonly used chemotherapeutic agent etoposide at a concentration of (75×10~(-6) M) during 6 hrs of exposure. The cytotoxic effect was significantly increased by the addition of (20 μg/ml) single wall carbon nanotubes (SW- CNTs) during the incubation time. The apoptosis of the cells was observed by analyzing intracellular active caspase-3 and the DNA fragmentation by combining the nanomaterials with the Etoposide. It was found that single walled carbon nanotubes significantly increased the apoptotic efficacy of chemotherapeutic drugs such as etoposide in the treatment of malignancies. Such a combination could lead to the development of novel hybrid drugs that contain both nanostructural materials as well as apoptotic substances for the treatment of chemo resistant cancers.
机译:纳米毒理学是一种重要的研究领域,填补了将纳米材料引入人体细胞的知识差距,它们与生物系统的相互作用,以及对生物体的风险的评估。在该研究中,在6小时的暴露期间,通过常用的化学治疗剂依托泊苷有效地诱导了人宫颈癌细胞(HeLa细胞)中的凋亡和拓扑异构酶II介导的DNA分类。通过在孵育时间中加入(20μg/ mL)单壁碳纳米管(SW-CNT),通过加入(20μg/ ml)单壁碳纳米管(SW-CNTS)显着增加细胞毒性效应。通过将细胞内活性胱天蛋白-3和DNA碎裂与依托皂苷结合来观察细胞的凋亡。发现单壁碳纳米管显着提高了化学治疗药物如依托泊苷中的凋亡效果在治疗恶性肿瘤中。这种组合可能导致新型杂化药物的开发,其含有纳米结构材料以及用于治疗化疗抗性癌症的凋亡物质。

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