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Nanostructured nanoparticles of self-assembled lipid pro-drugs as a route to improved chemotherapeutic agents

机译:纳米自组装的纳米粒子作为一个途径改善脂质前药化疗药物

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We demonstrate that oral delivery of self-assembled nanostructured nanoparticles consisting of 5-fluorouracil (5-FU) lipid prodrugs results in a highly effective, target-activated, chemotherapeutic agent, and offers significantly enhanced efficacy over a commercially available alternative that does not self-assemble. The lipid prodrug nanoparticles have been found to significantly slow the growth of a highly aggressive mouse 4T1 breast tumour, and essentially halt the growth of a human MDA-MB-231 breast tumour in mouse xenografts. Systemic toxicity is avoided as prodrug activation requires a three-step, enzymatic conversion to 5-FU, with the third step occurring preferentially at the tumour site. Additionally, differences in the lipid prodrug chemical structure and internal nanostructure of the nanoparticle dictate the enzymatic conversion rate and can be used to control sustained release profiles. Thus, we have developed novel oral nanomedicines that combine sustained release properties with target-selective activation.
机译:我们表明,口服的交付自组装纳米纳米颗粒组成的5 -氟尿嘧啶脂质(研究者用)高活性的结果在一个高度有效,target-activated、化学治疗剂提供显著增强的功效了商用替代不自组装。被发现明显缓慢增长高度积极的鼠标4 t1乳腺癌肿瘤,基本上停止增长的人类mda - mb - 231乳腺癌异种移植肿瘤的老鼠。避免系统性毒性药物前体激活需要三步,酶研究者用转换,第三步发生优先在肿瘤站点。不同的脂质前药的化学物质结构和内部的纳米结构纳米颗粒决定酶的转换率和可用于控制持续释放配置文件。纳米药物结合持续释放属性与target-selective激活。

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