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首页> 外文期刊>Journal of biomaterials applications >Radiosensitization of TPGS-emulsified docetaxel-loaded poly(lactic-co-glycolic acid) nanoparticles in CNE-1 and A549 cells
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Radiosensitization of TPGS-emulsified docetaxel-loaded poly(lactic-co-glycolic acid) nanoparticles in CNE-1 and A549 cells

机译:TPGS乳化的多西他赛负载的聚乳酸-乙醇酸共聚物纳米粒子在CNE-1和A549细胞中的放射增敏作用

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Docetaxel is among the most effective radiosensitizers. It is widely used as radiosensitizer in many tumors, including head and neck carcinoma. Nevertheless, poor solubility and severe hypersensitivity limit its clinical use and its therapeutic effect remains to be improved. In this study, docetaxel-loaded polymeric nanoparticles were prepared by nanoprecipitation method to be new radiosensitizer with lower side effects and higher efficacy. The physiochemical characteristics of the nanoparticles were studied. Two human tumor cell lines which are resistant to radiotherapy were used in this research. We have compared the radioenhancement efficacy of docetaxel-loaded nanoparticles with docetaxel in A549 and CNE-1 cells. Compared with docetaxel, radiosensitization of docetaxel-loaded nanoparticles was improved significantly (sensitization enhancement ratio in A549 increased 1.24-fold to 1.68-fold when the radiation was applied 2h after the drug, p<0.01, sensitization enhancement ratio in CNE-1 increased 1.32-fold to 1.61-fold, p<0.05). We explored the mechanisms for the radiosensitization efficiency and the difference between docetaxel and docetaxel-loaded poly(lactic-co-glycolic acid) (PLGA) nanoparticles. The improved radiosensitization efficacy was associated with enhanced G2/M arrest, promoted apoptosis and the role of D-alpha-tocopheryl polyethylene glycol 1000 succinate which will enhance the cell uptake and inhibit the multiple drug resistance. Moreover, the radiosensitization efficacy of docetaxel-loaded nanoparticles was more prominent than docetaxel. In conclusion, tocopheryl polyethylene glycol 1000 succinate-emulsified docetaxel-loaded PLGA nanoparticles were more efficacious and fewer adverse effects were observed than with the commercial docetaxel formulation. Thus, PLGA nanoparticles hold promise as a radiosensitizing agent.
机译:多西紫杉醇是最有效的放射增敏剂。它被广泛用作许多肿瘤的放射增敏剂,包括头颈癌。然而,不良的溶解性和严重的超敏性限制了其临床应用,其治疗效果仍有待提高。本研究采用纳米沉淀法制备了多西紫杉醇负载型聚合物纳米粒子,是一种副作用少,疗效高的新型放射增敏剂。研究了纳米粒子的理化特性。在这项研究中使用了两种对放射疗法有抵抗力的人类肿瘤细胞系。我们已经比较了多西他赛负载的纳米颗粒与多西他赛在A549和CNE-1细胞中的放射增强效果。与多西他赛相比,载有多西他赛的纳米粒子的放射增敏作用得到了显着改善(在药物照射后2h,A549的增敏作用提高了1.24倍至1.68倍,p <0.01,CNE-1的增敏作用提高了1.32倍至1.61倍,p <0.05)。我们探讨了放射增敏效率的机理以及多西他赛与载有多西他赛的聚乳酸-乙醇酸(PLGA)纳米颗粒之间的差异。改善的放射增敏功效与增强的G2 / M阻滞,促进的细胞凋亡以及D-α-生育酚聚乙二醇1000琥珀酸酯的作用有关,后者将增强细胞摄取并抑制多重耐药性。此外,负载多西他赛的纳米粒子的放射增敏功效比多西他赛更显着。总之,与商业多西紫杉醇制剂相比,生育酚聚乙二醇1000琥珀酸酯乳化的多西紫杉醇负载PLGA纳米颗粒更有效,并且观察到的副作用更少。因此,PLGA纳米颗粒有望作为放射增敏剂。

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