首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >A single dose of doxorubicin-functionalized bow-tie dendrimer cures mice bearing C-26 colon carcinomas
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A single dose of doxorubicin-functionalized bow-tie dendrimer cures mice bearing C-26 colon carcinomas

机译:单剂量阿霉素功能化的蝴蝶结树枝状大分子可治愈患有C-26结肠癌的小鼠

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The antitumor effect of doxorubicin (DOX) conjugated to a biodegradable dendrimer was evaluated in mice bearing C-26 colon carcinomas. An asymmetric biodegradable polyester dendrimer containing 8-10 wt % DOX was prepared. The design of the dendrimer carrier optimized blood circulation time through size and molecular architecture, drug loading through multiple attachment sites, solubility through PEGylation, and drug release through the use of pH-sensitive hydrazone linkages. In culture, dendrimer-DOX was > 10 times less toxic than free DOX toward C-26 colon carcinoma cells after exposure for 72 h. Upon i.v. administration to BALB/c mice with s.c. C-26 tumors, dendrimer-DOX was eliminated from the serum with a half-life of 16 +/- 1 h, and its tumor uptake was ninefold higher than i.v. administered free DOX at 48 h. In efficacy studies performed with BALE/c mice bearing s.c. C-26 tumors, a single i.v. injection of dendrimer-DOX at 20 mg/kg DOX equivalents 8 days after tumor implantation caused complete tumor regression and 100% survival of the mice over the 60-day experiment. No cures were achieved in tumor-implanted mice treated with free DOX at its maximum tolerated dose (6 mg/kg), drug-free dendrimer, or dendrimer-DOX in which the DOX was attached by means of a stable carbamate bond. The antitumor effect of dendrimer-DOX was similar to that of an equimolar dose of liposomal DOX (Doxil). The remarkable antitumor activity of dendrimer-DOX results from the ability of the dendrimer to favorably modulate the pharmacokinetics of attached DOX.
机译:在带有C-26结肠癌的小鼠中评估了与生物可降解树状聚合物偶联的阿霉素(DOX)的抗肿瘤作用。制备了包含8-10重量%的DOX的不对称的可生物降解的聚酯树枝状聚合物。树状聚合物载体的设计通过大小和分子结构优化了血液循环时间,通过多个附着位点负载了药物,通过聚乙二醇化溶解了药物,并通过使用pH敏感的键来优化了药物释放。在培养中,暴露72 h后,树状聚合物-DOX对C-26结肠癌细胞的毒性比游离DOX低10倍以上。在i.v.皮下注射给BALB / c小鼠从血清中消除了C-26肿瘤树状大分子DOX,其半衰期为16 +/- 1小时,其肿瘤吸收率比静脉注射高9倍。在48小时内给予免费DOX。在对带有s.c.的BALE / c小鼠进行的功效研究中C-26肿瘤,一次静脉注射肿瘤植入后8天,以20 mg / kg DOX当量注射树状大分子-DOX,在60天的实验中使小鼠完全消退肿瘤并100%存活。用最大耐受剂量(6 mg / kg)的游离DOX,无药物树枝状聚合物或通过稳定氨基甲酸酯键连接DOX的树枝状聚合物-DOX处理的肿瘤植入小鼠无法治愈。树状聚合物-DOX的抗肿瘤作用类似于等摩尔剂量的脂质体DOX(Doxil)。树枝状聚合物-DOX的显着抗肿瘤活性来自树枝状聚合物良好地调节附着的DOX的药代动力学的能力。

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