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磁热疗触发药物释放的磁热响应纳米载体中的磁热效应。

Magnetocaloric effect in magnetothermally-responsive nanocarriers for hyperthermia-triggered drug release.

机构信息

Institute of Nano- and Bio-polymeric Materials, School of Material Science and Engineering, Tongji University, 4800 Caoan Road, Shanghai 201804, People's Republic of China.

出版信息

Nanotechnology. 2012 Dec 21;23(50):505706. doi: 10.1088/0957-4484/23/50/505706. Epub 2012 Nov 26.

Abstract

The magnetocaloric effects and lower critical solution temperature (LCST) were investigated in a magnetothermally-responsive nanocarrier for magnetothermal drug release under alternating magnetic field (AMF). The Mn(0.2)Zn(0.8)Fe(2)O(4) nanoparticles with low T(c) were dispersed in a polymeric matrix consisting of N-Isopropyl acrylamide (NIPAAm) and N-hydroxymethyl acrylamide (HMAAm). The magnetocaloric effects and LCST of the nanocarriers were characterized by using high-resolution electron transmission microscopy, thermogravimetric analyses, and vibrating sample magnetometer. The maximum self-heating temperature of 42.9 °C was achieved by optimizing the Mn(0.2)Zn(0.8)Fe(2)O(4) concentration in the polymer matrix. By adjusting the NIPAAm to HMAAm ratio, the LCST was controlled at an ideal level of 40.1 °C for efficient thermosensitive drug delivery. Magnetothermally responsive drug release of Doxorubicin, an anticancer drug, was significantly enhanced by application of an external AMF on the nanocarriers. The cytotoxicity experimental results in vitro show good biocompatibility and efficient therapeutic effects in cancer treatment.

摘要

在交变磁场(AMF)下进行磁热药物释放的磁热响应纳米载体中研究了磁热效应和低临界溶液温度(LCST)。低 T(c)的 Mn(0.2)Zn(0.8)Fe(2)O(4)纳米颗粒分散在由 N-异丙基丙烯酰胺(NIPAAm)和 N-羟甲基丙烯酰胺(HMAAm)组成的聚合物基质中。通过使用高分辨率电子透射显微镜、热重分析和振动样品磁强计来表征纳米载体的磁热效应和 LCST。通过优化聚合物基质中 Mn(0.2)Zn(0.8)Fe(2)O(4)的浓度,实现了 42.9°C 的最大自加热温度。通过调整 NIPAAm 与 HMAAm 的比例,将 LCST 控制在理想的 40.1°C,以实现高效的热敏药物输送。应用外部 AMF 可显著增强阿霉素(一种抗癌药物)的磁热响应药物释放。体外细胞毒性实验结果表明,该纳米载体在癌症治疗中具有良好的生物相容性和高效的治疗效果。

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