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载多柔比星的温敏超顺磁性纳米载体用于药物控释和磁热疗应用。

Doxorubicin-Loaded Thermoresponsive Superparamagnetic Nanocarriers for Controlled Drug Delivery and Magnetic Hyperthermia Applications.

机构信息

Institut Jean Lamour (IJL, UMR 7198) , Université de Lorraine, CNRS , Campus Artem 2 allée André Guinier - BP 50840 , F-54011 Nancy Cedex, France.

Centre de Recherche en Automatique de Nancy (CRAN, UMR 7039) , Université de Lorraine, CNRS , F-54506 Vandœuvre-lès-Nancy , France.

出版信息

ACS Appl Mater Interfaces. 2019 Aug 28;11(34):30610-30620. doi: 10.1021/acsami.9b10444. Epub 2019 Aug 14.

Abstract

This study reports on the development of thermoresponsive core/shell magnetic nanoparticles (MNPs) based on an iron oxide core and a thermoresponsive copolymer shell composed of 2-(2-methoxy)ethyl methacrylate (MEOMA) and oligo(ethylene glycol)methacrylate (OEGMA) moieties. These smart nano-objects combine the magnetic properties of the core and the drug carrier properties of the polymeric shell. Loading the anticancer drug doxorubicin (DOX) in the thermoresponsive MNPs via supramolecular interactions provides advanced features to the delivery of DOX with spatial and temporal controls. The so coated iron oxide MNPs exhibit superparamagnetic behavior with a saturation magnetization of around 30 emu g. Drug release experiments confirmed that only a small amount of DOX was released at room temperature, while almost 100% drug release was achieved after 52 h at 42 °C with FeO@P(MEOMAOEGMA), which grafted polymer chains displaying a low critical solution temperature of 41 °C. Moreover, the MNPs exhibit magnetic hyperthermia properties as shown by specific absorption rate measurements. Finally, the cytotoxicity of the core/shell MNPs toward human ovary cancer SKOV-3 cells was tested. The results showed that the polymer-capped MNPs exhibited almost no toxicity at concentrations up to 12 μg mL, whereas when loaded with DOX, an increase in cytotoxicity and a decrease of SKOV-3 cell viability were observed. From these results, we conclude that these smart superparamagnetic nanocarriers with stealth properties are able to deliver drugs to tumor and are promising for applications in multimodal cancer therapy.

摘要

本研究报告了基于氧化铁核和由 2-(2-甲氧基)乙基甲基丙烯酸酯 (MEOMA) 和聚乙二醇甲基丙烯酸酯 (OEGMA) 部分组成的温敏共聚壳的温敏核/壳磁性纳米粒子 (MNPs) 的开发。这些智能纳米物体结合了核心的磁性和聚合物壳的药物载体性质。通过超分子相互作用将抗癌药物阿霉素 (DOX) 载入温敏 MNPs 中,为 DOX 的输送提供了时空控制的先进特性。如此涂覆的氧化铁 MNPs 表现出超顺磁性,饱和磁化强度约为 30 emu g。药物释放实验证实,在室温下仅释放少量 DOX,而在 42°C 下 52 小时后几乎 100%释放药物,这是因为接枝聚合物链的 FeO@P(MEOMAOEGMA)显示出低临界溶液温度为 41°C。此外,MNPs 表现出磁热疗特性,如比吸收率测量所示。最后,测试了核/壳 MNPs 对人卵巢癌细胞 SKOV-3 的细胞毒性。结果表明,聚合物封端的 MNPs 在高达 12 μg mL 的浓度下几乎没有毒性,而当负载 DOX 时,观察到细胞毒性增加和 SKOV-3 细胞活力降低。从这些结果中,我们得出结论,这些具有隐身特性的智能超顺磁纳米载体能够将药物递送到肿瘤部位,并有望在多模式癌症治疗中得到应用。

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