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基于氧化铁的磁共振对比剂:从化学到细胞标记。

Iron oxide based MR contrast agents: from chemistry to cell labeling.

机构信息

Department of General, Organic and Biomedical Chemistry, NMR and Molecular Imaging Laboratory, University of Mons, B-7000 Mons, Belgium.

出版信息

Curr Med Chem. 2009;16(35):4712-27. doi: 10.2174/092986709789878256.

Abstract

Superparamagnetic iron oxide nanoparticles can be used for numerous applications such as MRI contrast enhancement, hyperthermia, detoxification of biological fluids, drug delivery, or cell separation. In this work, we will summarize the chemical routes for synthesis of iron oxide nanoparticles, the fluid stabilization, and the surface modification of superparamagnetic iron oxide nanoparticles. Some examples of the numerous applications of these particles in the biomedical field mainly as MRI negative contrast agents for tissue-specific imaging, cellular labeling, and molecular imaging will be given. Larger particles or particles displaying a non-neutral surface (thanks to their coating or to a cell transfection agent with which they are mixed) are very useful tools, although the cells to be labeled have no professional phagocytic function. Labeled cells can then be transplanted and monitored by MRI in a broad spectrum of applications. Direct in vivo magnetic labeling of cells is mainly performed by intravenous injection of long-circulating iron oxide-based MRI contrast agents, which can extravasate and/or undergo a cellular uptake in an amount sufficient to allow an MRI visualization of areas of interest such as inflamed regions or tumors. Particles with long circulation times, or able to induce a strong negative effect individually have been also modified by conjugation to a ligand, so that their cellular uptake, or at least their binding to the cell surface, could occur through a specific ligand-receptor interaction, in vivo as well as in vitro. Thus, experimentally as well as in a few trials on humans, iron oxide particles currently find promising applications.

摘要

超顺磁氧化铁纳米粒子可应用于多种领域,如磁共振成像对比增强、热疗、生物体液解毒、药物输送或细胞分离。在这项工作中,我们将总结氧化铁纳米粒子的化学合成途径、流体稳定和超顺磁氧化铁纳米粒子的表面修饰。将给出这些粒子在生物医学领域的许多应用的一些例子,主要作为磁共振成像负对比剂用于组织特异性成像、细胞标记和分子成像。较大的粒子或具有非中性表面的粒子(由于其涂层或与其混合的细胞转染剂)是非常有用的工具,尽管要标记的细胞没有专业的吞噬功能。然后,标记的细胞可以通过 MRI 移植和监测在广泛的应用中。细胞的直接体内磁标记主要通过静脉注射长循环氧化铁基磁共振成像对比剂来进行,这些对比剂可以渗出和/或被细胞摄取,摄取量足以允许对感兴趣的区域(如炎症区域或肿瘤)进行磁共振成像可视化。通过与配体偶联,还对具有长循环时间或能够单独产生强烈负效应的粒子进行了修饰,以便其细胞摄取,或至少其与细胞表面的结合,可以通过特定的配体-受体相互作用发生,无论是在体内还是在体外。因此,铁氧化物粒子目前在实验和人体试验中都有很好的应用前景。

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