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Temperature-Tunable Iron Oxide Nanoparticles for Remote-Controlled Drug Release

机译:温度可调的氧化铁纳米颗粒用于远程控制药物释放

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摘要

Herein, we report the successful development of a novel nanosystem capable of an efficient delivery and temperature-triggered drug release specifically aimed at cancer. The water-soluble 130.1 ± 0.2 nm iron oxide nanoparticles (IONPs) were obtained via synthesis of a monodispersed iron oxide core stabilized with tetramethylammonium hydroxide pentahydrate (TMAOH), followed by coating with the thermoresponsive copolymer poly-(NIPAM-stat-AAm)-block-PEI (PNAP). The PNAP layer on the surface of the IONP undergoes reversible temperature-dependent structural changes from a swollen to a collapsed state resulting in the controlled release of anticancer drugs loaded in the delivery vehicle. We demonstrated that the phase transition temperature of the prepared copolymer can be precisely tuned to the desired value in the range of 36°C–44°C by changing the monomers ratio during the preparation of the nanoparticles. Evidence of modification of the IONPs with the thermoresponsive copolymer is proven by ATR-FTIR and a quantitative analysis of the polymeric and iron oxide content obtained by thermogravimetric analysis. When loaded with doxorubicin (DOX), the IONPs-PNAP revealed a triggered drug release at a temperature that is a few degrees higher than the phase transition temperature of a copolymer. Furthermore, an in vitro study demonstrated an efficient internalization of the nanoparticles into the cancer cells and showed that the drug-free IONPs-PNAP were nontoxic toward the cells. In contrast, sufficient therapeutic effect was observed for the DOX-loaded nanosystem as a function of temperature. Thus, the developed temperature-tunable IONPs-based delivery system showed high potential for remotely triggered drug delivery and the eradication of cancer cells.Electronic supplementary materialThe online version of this article (doi:10.1208/s12249-014-0131-x) contains supplementary material, which is available to authorized users.
机译:在此,我们报告了一种新型纳米系统的成功开发,该系统能够有效递送并专门针对癌症进行温度触发的药物释放。通过合成用五水合四甲基氢氧化铵(TMAOH)稳定的单分散氧化铁核,然后用热敏共聚物聚-(NIPAM-stat-AAm)-涂覆获得130.1±0.2 nm的水溶性氧化铁纳米颗粒(IONPs)块PEI(PNAP)。 IONP表面上的PNAP层经历了可逆的与温度相关的结构变化,从溶胀状态变为塌陷状态,导致控释释放在运载工具中的抗癌药物。我们证明,通过在纳米颗粒的制备过程中改变单体比例,可以将制备的共聚物的相变温度精确地调节到36°C–44°C范围内的所需值。通过ATR-FTIR以及通过热重分析获得的聚合物和氧化铁含量的定量分析,证明了用热敏共聚物对IONP进行改性的证据。当负载阿霉素(DOX)时,IONPs-PNAP在高于共聚物的相变温度几度的温度下显示出触发的药物释放。此外,一项体外研究表明,纳米颗粒可以有效地内化到癌细胞中,并且表明不含药物的IONPs-PNAP对细胞无毒。相比之下,对于随温度升高的DOX负载纳米系统,观察到足够的治疗效果。因此,已开发的基于IONPs的温度可调递送系统显示了远程触发药物递送和根除癌细胞的巨大潜力。电子补充材料本文的在线版本(doi:10.1208 / s12249-014-0131-x)包含补充剂资料,可供授权用户使用。

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