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首页> 外文期刊>Molecular pharmaceutics >Paclitaxel-loaded N-octyl-O-sulfate chitosan micelles for superior cancer therapeutic efficacy and overcoming drug resistance
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Paclitaxel-loaded N-octyl-O-sulfate chitosan micelles for superior cancer therapeutic efficacy and overcoming drug resistance

机译:紫杉醇加载的N-辛基-O-硫酸壳多糖胶束,用于高级癌症治疗疗效和克服耐药性

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摘要

The nanoparticle-based drug delivery system holds great attraction to overcome or circumvent multidrug resistance (MDR) in cancer to date. In this work, a synthesized amphiphilic graft copolymer, N-octyl-O-sulfate chitosan (NOSC), and its paclitaxel (PTX)-encapsulated micelles (PTX-M) have been systematically investigated on the MDR reversal effect in vitro and in vivo as well as the mechanism of P-glycoprotein (P-gp) inhibition. NOSC in a wide concentration range even above the critical micelle concentration showed an effective effect on inhibiting P-gp-mediated PTX efflux, which was remarkably different from the surfactants and the Pluronic copolymers. Multiple mechanisms were involved in this effect of NOSC, such as stimulating P-gp ATPase, competitively impeding the binding of PTX with P-gp and reducing the fluidity of the cell membrane. PTX-M presented the highest cellular uptake and the lowest efflux rate of PTX, thereby yielding the optimal cytotoxicity on both the human hepatocellular liver carcinoma (HepG2) cells and the multidrug resistance HepG2 (HepG2-P) cells, which resulted from a combination of the inhibiting P-gp effect of NOSC and the bypassing P-gp action of the intact PTX-M. Additionally, PTX-M had superior blood persistence, tumor accumulation, and therapeutic efficacy after intravenous injection into the tumor-bearing mice. Furthermore, it was demonstrated that most of PTX-M as an intact form was delivered at the tumor site, which ensures the synergetic effect of NOSC micelles on drug delivery and P-gp inhibition. The aforementioned results suggested that NOSC micelles presented promising potential as an anticancer drug carrier for enhanced MDR cancer therapy.
机译:基于纳米粒子的药物递送系统具有迄今为止癌症中的克服或旨在避免多药抗性(MDR)的巨大吸引力。在这项工作中,在体外和体内系统地研究了合成的两亲接枝共聚物,N-辛基-O-硫酸壳环(NOSC)及其紫杉醇(PTX) - 植物胶束(PTX-M)以及P-糖蛋白(P-GP)抑制的机制。甚至高于临界胶束浓度的宽浓度范围内的NASC表明对抑制p-GP介导的PTX流出的有效效果,这与表面活性剂和Pluronic共聚物不同。 NOSC的这种效果涉及多种机制,例如刺激P-GP ATP酶,竞争力地阻碍PTX与P-GP的结合并降低细胞膜的流动性。 PTX-M呈现了最高的蜂窝摄取和PTX的最低流速速率,从而在人肝细胞癌(HEPG2)细胞和多药耐药性HepG2(HepG2-P)细胞中产生最佳细胞毒性,这是由组合产生的NOSC的抑制p-GP效应和完整PTX-M的旁路P-GP作用。此外,PTX-M在静脉注射到携带肿瘤小鼠后具有优异的血液持久性,肿瘤积累和治疗效果。此外,证明了大部分PTX-M作为完整形式在肿瘤部位递送,这确保了NOSC胶束对药物递送和P-GP抑制的协同作用。上述结果表明,NOSC胶束呈现出充满希望的潜在潜在的抗癌药物载体,用于增强MDR癌症治疗。

著录项

  • 来源
    《Molecular pharmaceutics》 |2014年第1期|共13页
  • 作者

    JinX.; MoR.; DingY.; ZhengW.; ZhangC.;

  • 作者单位

    State Key Laboratory of Natural Medicines Center of Drug Discovery China Pharmaceutical;

    State Key Laboratory of Natural Medicines Center of Drug Discovery China Pharmaceutical;

    State Key Laboratory of Natural Medicines Center of Drug Discovery China Pharmaceutical;

    School of Life Sciences State Key Laboratory of Pharmaceutical Biotechnology Nanjing University;

    State Key Laboratory of Natural Medicines Center of Drug Discovery China Pharmaceutical;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 药学;
  • 关键词

    drug resistance; micelle; N-octyl-O-sulfate chitosan; P-gp inhibition; paclitaxel;

    机译:耐药;胶束;正辛基-O-硫酸壳多糖;P-GP抑制;紫杉醇;

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