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首页> 外文期刊>Acta biomaterialia >pH-sensitive nanoparticles of poly(L-histidine)-poly(lactide-co-glycolide)-tocopheryl polyethylene glycol succinate for anti-tumor drug delivery
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pH-sensitive nanoparticles of poly(L-histidine)-poly(lactide-co-glycolide)-tocopheryl polyethylene glycol succinate for anti-tumor drug delivery

机译:聚(L-组氨酸)-聚(丙交酯-乙交酯)-生育酚基聚乙二醇琥珀酸酯的pH敏感纳米颗粒用于抗肿瘤药物递送

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A novel pH-sensitive polymer, poly(L-histidine)-poly(lactide-co-glycolide)-tocopheryl polyethylene glycol succinate (PLH-PLGA-TPGS), was synthesized to design a biocompatible drug delivery system for cancer chemotherapy. The structure of the PLH-PLGA-TPGS copolymer was confirmed by H-1-NMR, FTIR and GPC. The apparent pK(a) of the PLH-PLGA-TPGS copolymer was calculated to be 6.33 according to the acid-base titration curve. The doxorubicin (DOX)-loaded nanoparticles (PLH-PLGA-TPGS nanopartides and PLGA-TPGS nanoparticles) and corresponding blank nanoparticles were prepared by a co-solvent evaporation method. The blank PLH-PLGA-TPGS nanoparticles showed an acidic pH-induced increase in particle size. The DOX-loaded nanoparticles based on PLH-PLGA-TPGS showed a pH-triggered drug-release behavior under acidic conditions. The results of in vitro cytotoxicity experiment on MCF-7 and MCF-7/ADR cells showed that the DOX-loaded PLH-PLGA-TPGS nanoparticles resulted in lower cell viability versus the PLGA-TPGS nanoparticles and free DOX solution. Confocal laser scanning microscopy images showed that DOX-loaded PLH-PLGA-TPGS nanoparticles were internalized by MCF-7/ADR cells after 1 and 4 h incubation and most of them accumulated in lysosomes to accelerate DOX release under acidic conditions. In summary, the PLH-PLGA-TPGS nanoparticles have great potential to be used as carriers for anti-tumor drug delivery. (C) 2014 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
机译:合成了一种新型的pH敏感聚合物,即聚(L-组氨酸)-聚(丙交酯-乙交酯)-生育酚聚乙二醇琥珀酸酯(PLH-PLGA-TPGS),以设计用于癌症化疗的生物相容性药物递送系统。 PLH-PLGA-TPGS共聚物的结构通过H-1-NMR,FTIR和GPC确认。根据酸碱滴定曲线,PLH-PLGA-TPGS共聚物的表观pK(a)计算为6.33。通过共溶剂蒸发法制备了装载有阿霉素(DOX)的纳米颗粒(PLH-PLGA-TPGS纳米颗粒和PLGA-TPGS纳米颗粒)和相应的空白纳米颗粒。空白的PLH-PLGA-TPGS纳米颗粒表现出酸性pH诱导的粒径增加。基于PLH-PLGA-TPGS的DOX负载纳米颗粒在酸性条件下显示出pH触发的药物释放行为。在MCF-7和MCF-7 / ADR细胞上进行的体外细胞毒性实验结果表明,与PLGA-TPGS纳米颗粒和游离的DOX溶液相比,DOX负载的PLH-PLGA-TPGS纳米颗粒导致较低的细胞活力。共聚焦激光扫描显微镜图像显示,在温育1和4小时后,MCF-7 / ADR细胞将DOX负载的PLH-PLGA-TPGS纳米颗粒内在化,并且它们大多数在溶酶体中积累以加速DOX在酸性条件下的释放。总之,PLH-PLGA-TPGS纳米粒子具有巨大的潜力,可以用作抗肿瘤药物输送的载体。 (C)2014 Acta Materialia Inc.,由Elsevier Ltd.发行。保留所有权利。

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