首页> 外文期刊>Journal of nanoscience and nanotechnology >Enhancement of Thermal Damage to Adenocarcinoma Cells by Iron Nanoparticles Modified with MUC1 Aptamer
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Enhancement of Thermal Damage to Adenocarcinoma Cells by Iron Nanoparticles Modified with MUC1 Aptamer

机译:MUC1适体修饰的铁纳米颗粒增强对腺癌细胞的热损伤

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Hyperthermia cancer treatment is an adjunctive therapy that aims at killing the tumor cells with excessive heat that is usually generated by metal contrasts exposed to alternating magnetic field. The efficacy of hyperthermia is often limited by the heat damage to normal tissue due to indiscriminate distribution of the metal contrasts within the body. Tumor-targeting metal contrasts may reduce the toxicity of hyperthermia and improve the efficacy of thermotherapy against cancer. MUC1 is a glycoprotein over expressed in most adenocarcinomas, and represents an attractive therapeutic target. In this study, a MUC1 aptamer is conjugated with iron nanoparticles to construct adenocarcinoma-targeting metal contrasts. DNA hybridization studies confirmed that the aptamers were conjugated to the iron nanoparticles. Importantly, more aptamer-modified nanoparticles attached to the MUC1-positive cancer cells compared with the unmodified nanoparticles. Moreover, aptamer-modified nanoparticles significantly enhanced the targeted hyperthermia damage to MUC1-positive cancer cells in vitro (p < 0.05). The results suggest that MUC1 aptamer-modified metal particles may have potential in development of targeted hyperthermia therapy against adenocarcinomas.
机译:热疗癌症治疗是一种辅助治疗,旨在通过过度加热杀死肿瘤细胞,通常由暴露于交变磁场的金属对比剂产生的过多热量。由于金属对比剂在体内的不加选择的分布,热疗的功效通常受到对正常组织的热损伤的限制。靶向肿瘤的金属对比剂可以降低热疗的毒性,并提高热疗抗癌的功效。 MUC1是在大多数腺癌中过度表达的糖蛋白,并且代表有吸引力的治疗靶标。在这项研究中,将MUC1适体与铁纳米颗粒偶联以构建靶向腺癌的金属对比剂。 DNA杂交研究证实,适体与铁纳米颗粒结合。重要的是,与未修饰的纳米粒子相比,更多的适体修饰的纳米粒子附着在MUC1阳性癌细胞上。此外,适体修饰的纳米粒子在体外显着增强了靶向热疗对MUC1阳性癌细胞的损害(p <0.05)。结果表明,MUC1适配体修饰的金属颗粒可能在针对腺癌的靶向热疗中发展。

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