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纳米级磁泳:追踪纳米载体的磁靶向效率。

Magnetophoresis at the nanoscale: tracking the magnetic targeting efficiency of nanovectors.

机构信息

Laboratoire Matière & Systèmes Complexes, UMR 7057, CNRS & Université Paris Diderot, 10 rue Alice Domon & Léonie Duquet, 75205 Paris cedex 13, France.

出版信息

Nanomedicine (Lond). 2012 Nov;7(11):1713-27. doi: 10.2217/nnm.12.40. Epub 2012 Jun 18.

Abstract

AIM

Most of the research efforts in magnetic targeting have been focused on the development of magnetic nanovectors, while the investigation of methods for tracking their magnetic targeting efficiency remains inappropriately addressed. We propose herein a miniaturized approach for appraising magnetophoretic mobility at the nanoscale.

MATERIALS & METHODS: A simple and easy-to-use chamber including a microtip as a magnetic attractor was developed to perform magnetophoretic measurement at the size scale of nano-objects, and under bright field or fluorescence microscopy. Different sets of magnetic nanocontainers were produced and their magnetophoretic mobility was investigated. Real-time observations of the Brownian motion of the nanocontainers were also carried out for simultaneous size determination.

RESULTS

Attraction of the nanocontainers at the microtip is demonstrated as a qualitative method that immediately distinguishes magnetically responsive nano-objects. The combination of the analysis of Brownian motion, together with the magnetophoretic mobility, inferred both the size, the magnetophoretic velocity and the magnetic content of the nanocontainers. Additionally, nanomagnetophoresis experiments under fluorescence microscopy provided information on the constitutive core/shell integrity of the nanocontainers and the co-internalization of a fluorescent cargo.

CONCLUSION

This nanomagnetophoresis method represents a promising tool to estimate the feasibility of magnetic targeting in laboratory routine.

摘要

目的

大多数磁靶向研究都集中在磁性纳米载体的开发上,而跟踪其磁靶向效率的方法的研究仍未得到充分解决。我们在此提出了一种用于评估纳米尺度下电泳迁移率的小型化方法。

材料与方法

开发了一个简单易用的腔室,包括一个微尖作为磁性吸引物,以在纳米物体的尺寸范围内进行电泳测量,并在明场或荧光显微镜下进行。制备了不同的磁性纳米容器,并研究了它们的电泳迁移率。还对纳米容器的布朗运动进行了实时观察,以同时确定其大小。

结果

纳米容器在微尖上的吸引被证明是一种定性方法,可以立即区分对磁性有反应的纳米物体。布朗运动分析与电泳迁移率的结合,推断了纳米容器的大小、电泳速度和磁性含量。此外,荧光显微镜下的纳米磁泳实验提供了关于纳米容器组成核/壳完整性和荧光货物共内化的信息。

结论

这种纳米磁泳方法代表了一种有前途的工具,可以在实验室常规中评估磁靶向的可行性。

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