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Facile Fabrication of Tumor Redox-Sensitive Nanoassemblies of Small-Molecule Oleate Prodrug as Potent Chemotherapeutic Nanomedicine

机译:小分子油酸酯前体肿瘤氧化还原敏感纳米组件的简便制备,作为有力的化疗纳米药物。

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摘要

The conjugate of paclitaxel (PTX) and docosahexaenoic acid has entered into clinical trials. However, the most recent clinical outcomes fell short of expectations, due to the extremely slow drug release from the hydrophobic conjugates. Herein, a novel prodrug-based nanoplatform self-assembled by the disulfide bond linked conjugates of PTX and oleic acid for rapid and differential release of PTX in tumor cells is reported. This redox-responsive prodrug-nanosystem demonstrates multiple therapeutic advantages, including one-step facile fabrication, high drug-loading efficiency (56%, w/ w), on-demand drug release responding to redox stimuli, as well as favorable cellular uptake and biodistribution. These advantages result in significantly enhanced antitumor efficacy in vivo, with the tumor almost completely disappearing in mice. Such a uniquely engineered prodrug-nanosystem has great potential to be used as potent chemotherapeutic nanomedicine in clinical cancer therapy.
机译:紫杉醇(PTX)和二十二碳六烯酸的共轭物已进入临床试验。但是,由于疏水结合物的药物释放极其缓慢,因此最新的临床结果未达到预期。在本文中,报道了通过PTX和油酸的二硫键连接的共轭物自组装的新型基于前药的纳米平台,用于在肿瘤细胞中快速和差异释放PTX。该氧化还原反应性前药-纳米系统显示出多种治疗优势,包括一步制备,高载药效率(56%,w / w),对氧化还原刺激反应的按需药物释放以及良好的细胞摄取和生物分布。这些优点导致体内抗肿瘤功效显着增强,肿瘤在小鼠中几乎完全消失。这样独特设计的前药-纳米系统具有巨大的潜力,可以在临床癌症治疗中用作有效的化疗纳米药物。

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