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量子点与填充有 Fe3O4 的碳纳米管连接,用于癌症靶向成像和磁性引导药物输送。

Quantum dots conjugated with Fe3O4-filled carbon nanotubes for cancer-targeted imaging and magnetically guided drug delivery.

机构信息

Research Center for Analytical Sciences, College of Sciences, Northeastern University, Box 332, Shenyang 110819, China.

出版信息

Langmuir. 2012 Nov 27;28(47):16469-76. doi: 10.1021/la303957y. Epub 2012 Nov 12.

Abstract

A novel and specific nanoplatform for in vitro simultaneous cancer-targeted optical imaging and magnetically guided drug delivery is developed by conjugating CdTe quantum dots with Fe(3)O(4)-filled carbon nanotubes (CNTs) for the first time. Fe(3)O(4) is filled into the interior of the CNTs, which facilitates magnetically guided delivery and improves the synergetic targeting efficiency. In comparison with that immobilized on the external surface of CNTs, the magnetite nanocrystals inside the CNTs protect it from agglomeration, enhance its chemical stability, and improve the drug loading capacity. It also avoids magnetic nanocrystals-induced quenching of fluorescence of the quantum dots. The SiO(2)-coated quantum dots (HQDs) attached on the surface of CNTs exhibit favorable fluorescence as the hybrid SiO(2) shells on the QDs surface prevent its fluorescence quenching caused by the CNTs. In addition, the hybrid SiO(2) shells also mitigate the toxicity of the CdTe QDs. By coating transferrin on the surface of the herein modified CNTs, it provides a dual-targeted drug delivery system to transport the doxorubicin hydrochloride (DOX) into Hela cells by means of an external magnetic field. The nanocarrier based on the multifunctional nanoplatform exhibits an excellent drug loading capability of ca. 110%, in addition to cancer-targeted optical imaging as well as magnetically guided drug delivery.

摘要

首次将 CdTe 量子点与填充有 Fe(3)O(4)的碳纳米管 (CNT) 偶联,构建了一种新颖且特异的用于体外癌症靶向光学成像和磁导向药物递送的纳米平台。将 Fe(3)O(4)填充到 CNT 的内部,这有利于磁导向递送并提高协同靶向效率。与固定在 CNT 外表面的量子点相比,内部的磁铁矿纳米晶体可防止其团聚、增强其化学稳定性并提高载药量。它还避免了磁性纳米晶体对量子点荧光的猝灭。表面附着的涂有 SiO(2)的量子点 (HQDs) 表现出良好的荧光,因为量子点表面的混合 SiO(2)壳防止了 CNT 引起的荧光猝灭。此外,混合 SiO(2)壳还减轻了 CdTe QD 的毒性。通过在修饰后的 CNT 表面涂覆转铁蛋白,该系统提供了一种双靶向药物输送系统,可通过外部磁场将盐酸阿霉素 (DOX) 输送到 Hela 细胞中。基于多功能纳米平台的纳米载体表现出出色的载药能力,约为 110%,此外还具有癌症靶向光学成像和磁导向药物递送功能。

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