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用于癌症治疗和成像的靶向近红外 QD 负载胶束。

Targeted near-IR QDs-loaded micelles for cancer therapy and imaging.

机构信息

Department of Chemical and Biological Engineering, Chungju National University, Chungbuk 380-702, Republic of Korea.

出版信息

Biomaterials. 2010 Jul;31(20):5436-44. doi: 10.1016/j.biomaterials.2010.03.057. Epub 2010 Apr 20.

Abstract

The use of water-soluble, functionalized quantum dots (QDs) that are highly stable against oxidation for biological and biomedical applications is currently one of the fastest growing fields of nanotechnology. Polymer-based nanoparticles are now widely used for drug delivery and targeted therapy. We modified the surface of near Infrared QDs by the solid dispersion method using PEG-PCDA and PCDA-Herceptin conjugates to demonstrate water-solubility and target-specific properties. Upon UV irradiation, QD cores located within nanoprobes were further stabilized by intramicellar cross-linking between neighboring PCDA-Herceptin moieties. These cross-linked nanoprobes showed higher stability and less toxicity. Near-IR QDs-loaded micelles were spherical with diameters of around 130-150 nm. The anti-tumor effect of near-IR QDs-loaded micelles against MDA-MB-231 tumors was remarkably better than that of control. Mice treated with the near-IR QDs-loaded micelles had a tumor volume of about 285 mm(3), indicating shrinkage in initial tumor volume and inhibition of tumor growth by 77.3% compared to that of control group (saline injection). In addition, near-IR QDs-loaded micelles were injected intravenously into tumor-bearing nude mice for simultaneous tumor therapy and imaging. We observed that the targeted near-IR QDs-loaded micelles distributed rapidly throughout the animal body including the tumor in real time. These multi-functional nanoprobes could therefore be used for both active and passive targeting, imaging and treatment of cancers in the early stage.

摘要

用于生物和生物医学应用的高度稳定的水溶性功能化量子点 (QD) 的使用是纳米技术发展最快的领域之一。基于聚合物的纳米颗粒现在广泛用于药物传递和靶向治疗。我们通过使用 PEG-PCDA 和 PCDA-Herceptin 缀合物的固态分散方法修饰近红外 QD 的表面,以展示其水溶性和靶向特性。在紫外光照射下,QD 核进一步通过相邻 PCDA-Herceptin 部分之间的胶束内交联而稳定。这些交联的纳米探针显示出更高的稳定性和更低的毒性。近红外 QD 负载的胶束呈球形,直径约为 130-150nm。近红外 QD 负载的胶束对 MDA-MB-231 肿瘤的抗肿瘤作用明显优于对照。用近红外 QD 负载的胶束处理的小鼠肿瘤体积约为 285mm3,表明初始肿瘤体积缩小,肿瘤生长抑制率为 77.3%,与对照组(生理盐水注射)相比。此外,将近红外 QD 负载的胶束静脉注射到荷瘤裸鼠体内,用于同时进行肿瘤治疗和成像。我们观察到,靶向近红外 QD 负载的胶束在体内(包括肿瘤)快速分布,并实时成像。因此,这些多功能纳米探针可用于主动和被动靶向、成像和早期癌症治疗。

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