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Improved cytotoxicity and multidrug resistance reversal of chitosan based polymeric micelles encapsulating oxaliplatin.

机译:封装了奥沙利铂的壳聚糖基聚合物胶束的改善的细胞毒性和多药耐药性逆转。

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To overcome the side effects and drug resistance in cancer chemotherapy, oxaliplatin (OXA) was encapsulated in chitosan based polymeric micelles with glycolipid-like structure, which were formed by stearic acid-grafted chitosan oligosaccharide (CSO-SA). CSO-SA with 6.89% amino substituted degree was synthesized in this paper. The critical micelle concentration was about 0.12 mg/mL. CSO-SA micelles with the concentration of 1.0 mg/mL had 34.8 nm number average diameter and +50.8 mV surface potential in the aqueous medium. Thin-film dispersed method mediated by lecithin was chosen to prepare OXA-loaded CSO-SA micelles (CSO-SA/OXA), encapsulation efficiency of which could reach up to about 47%. In vitro anti-tumor activity of CSO-SA/OXA micelles against drug sensitive tumor cells and drug resistant cells was then examined. Using SGC-7901, SKOV3, BEL-7402, K562, and MCF-7 as model drug sensitive tumor cells, the 50% inhibition of cellular growth (IC(50)) of CSO-SA/OXA micelles could be lowered about 3-6 folds compared to that of free OXA solution. Furthermore, cytotoxicity test of CSO-SA/OXA micelles against MCF-7 and multidrug resistant MCF-7 (MCF-7/Adr) cells presented the reversal activity against MCF-7/Adr cells. The present micelles are a promising carrier candidate for platinum drug to improve the anti-tumor activity.
机译:为了克服癌症化疗中的副作用和耐药性,奥沙利铂(OXA)被封装在具有糖脂样结构的壳聚糖基聚合物胶束中,该胶束由硬脂酸接枝的壳聚糖寡糖(CSO-SA)形成。本文合成了具有6.89%氨基取代度的CSO-SA。临界胶束浓度为约0.12mg / mL。浓度为1.0 mg / mL的CSO-SA胶束在水性介质中的数均直径为34.8 nm,表面电势为+50.8 mV。选择卵磷脂介导的薄膜分散法制备载有OXA的CSO-SA胶束(CSO-SA / OXA),其包封率可达到约47%。然后检查了CSO-SA / OXA胶束对药物敏感性肿瘤细胞和耐药细胞的体外抗肿瘤活性。使用SGC-7901,SKOV3,BEL-7402,K562和MCF-7作为模型药物敏感性肿瘤细胞,可以将CSO-SA / OXA胶束的50%细胞生长抑制(IC(50))降低约3-与自由OXA溶液相比,是原来的6倍。此外,CSO-SA / OXA胶束对MCF-7和多药耐药MCF-7(MCF-7 / Adr)细胞的细胞毒性测试显示了对MCF-7 / Adr细胞的逆转活性。本胶束是铂药物有望改善抗肿瘤活性的有希望的载体候选物。

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