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Enhanced antitumoral activity of doxorubicin against lung cancer cells using biodegradable poly(butylcyanoacrylate) nanoparticles

机译:使用可生物降解的聚(氰基丙烯酸丁酯)纳米颗粒增强阿霉素对肺癌细胞的抗肿瘤活性

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Doxorubicin (Dox) is widely used for the combined chemotherapy of solid tumors. However, the use of these drug associations in lung cancer has low antitumor efficacy. To improve its efficacious delivery and activity in lung adenocarcinoma cells, we developed a biodegradable and noncytotoxic nanoplatform based on biodegradable poly(butylcyanoacrylate) (PBCA). The reproducible formulation method was based on an anionic polymerization process of the PBCA monomer, with the antitumor drug being entrapped within the nanoparticle (NP) matrix during its formation. Improved drug-entrapment efficiencies and sustained (biphasic) drug-release properties were made possible by taking advantage of the synthesis conditions (drug, monomer, and surfactant-agent concentrations). Dox-loaded NPs significantly enhanced cellular uptake of the drug in the A549 and LL/2 lung cancer cell lines, leading to a significant improvement of the drug’s antitumoral activity. In vivo studies demonstrated that Dox-loaded NPs clearly reduced tumor volumes and increased mouse-survival rates compared to the free drug. These results demonstrated that PBCA NPs may be used to optimize the antitumor activity of Dox, thus exhibiting a potential application in chemotherapy against lung adenocarcinoma.
机译:阿霉素(Dox)被广泛用于实体瘤的联合化疗。但是,这些药物联合在肺癌中的使用具有较低的抗肿瘤功效。为了提高其在肺腺癌细胞中的有效递送和活性,我们开发了基于可生物降解的聚(氰基丙烯酸丁酯)(PBCA)的可生物降解且无细胞毒性的纳米平台。可重复的配制方法是基于PBCA单体的阴离子聚合过程,在其形成过程中将抗肿瘤药物截留在纳米颗粒(NP)基质中。通过利用合成条件(药物,单体和表面活性剂浓度),可以提高药物吸收效率和持续的(两相)药物释放特性。载有Dox的NP大大增强了A549和LL / 2肺癌细胞系对该药物的细胞吸收,从而显着改善了该药物的抗肿瘤活性。体内研究表明,与游离药物相比,载有Dox的NP明显减少了肿瘤体积并提高了小鼠存活率。这些结果表明,PBCA NPs可用于优化Dox的抗肿瘤活性,从而在针对肺腺癌的化学疗法中具有潜在的应用前景。

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