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通过超临界二氧化碳悬浮增强分散法制备的MTX-Fe3O 4-PLLA-PEG-PLLA微球的体外和体内抗肿瘤作用。

The in vitro and in vivo anti-tumor effects of MTX-Fe3O 4-PLLA-PEG-PLLA microspheres prepared by suspension-enhanced dispersion by supercritical CO2.

作者信息

Chen AiZheng, Dang TingTing, Wang ShiBin, Tang Na, Liu YuanGang, Wu WenGuo

机构信息

College of Chemical Engineering, Huaqiao University, Xiamen, 361021, China,

出版信息

Sci China Life Sci. 2014 Jul;57(7):698-709. doi: 10.1007/s11427-014-4680-8. Epub 2014 Jun 16.

Abstract

The in vitro and in vivo anti-tumor efficacy of methotrexate-loaded Fe3O4-poly-L-lactide-poly(ethylene glycol)-poly-L-lactide magnetic composite microspheres (MTX-Fe3O4-PLLA-PEG-PLLA MCMs, MMCMs), which were produced by co-precipitation (C) and microencapsulation (M) in a supercritical process, was evaluated at various levels: cellular, molecular, and integrated. The results at the cellular level indicate that MMCMs (M) show a better anti-proliferation activity than raw MTX and could induce morphological changes of cells undergoing apoptosis. At the molecular level, MMCMs (M) lead to a significantly higher relative mRNA expression of bax/bcl-2 and caspase-3 than MMCMs (C) at 10 μg mL(-1) (P<0.01); and the pro-caspase-3 protein expression measured by Western blot analysis also demonstrates that MMCMs (M) can effectively activate pro-caspase-3. At the integrated level, mice bearing a sarcoma-180 tumor are used; in vivo anti-tumor activity tests reveal that MMCMs (M) with magnetic induction display a much higher tumor suppression rate and lower toxicity than raw MTX. Pharmacokinetic studies show that MMCMs (M) with magnetic induction significantly increase the accumulation of MTX in the tumor tissue compared with the other treatments. These results suggest that the MMCMs (M) prepared by the SpEDS process have great potential to play a positive role in the magnetic targeted therapy field.

摘要

通过超临界共沉淀(C)和微囊化(M)制备的载甲氨蝶呤的Fe3O4-聚-L-丙交酯-聚(乙二醇)-聚-L-丙交酯磁性复合微球(MTX-Fe3O4-PLLA-PEG-PLLA MCMs,MMCMs)的体外和体内抗肿瘤疗效在细胞、分子和整体等多个层面进行了评估。细胞水平的结果表明,MMCMs(M)比甲氨蝶呤原料药表现出更好的抗增殖活性,并且能够诱导细胞凋亡时的形态变化。在分子水平上,在10μg mL(-1)时,MMCMs(M)导致bax/bcl-2和caspase-3的相对mRNA表达显著高于MMCMs(C)(P<0.01);通过蛋白质印迹分析测定的前caspase-3蛋白表达也表明MMCMs(M)能够有效激活前caspase-3。在整体水平上,使用荷肉瘤180肿瘤的小鼠;体内抗肿瘤活性测试表明,具有磁感应的MMCMs(M)显示出比甲氨蝶呤原料药更高的肿瘤抑制率和更低的毒性。药代动力学研究表明,与其他治疗方法相比,具有磁感应的MMCMs(M)显著增加了甲氨蝶呤在肿瘤组织中的蓄积。这些结果表明,通过SpEDS工艺制备的MMCMs(M)在磁靶向治疗领域具有发挥积极作用的巨大潜力。

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