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活体受体中干细胞的磁共振追踪

MR tracking of stem cells in living recipients.

作者信息

Syková Eva, Jendelová Pavla, Herynek Vít

机构信息

Institute of Experimental Medicine ASCR, Prague, Czech Republic.

出版信息

Methods Mol Biol. 2009;549:197-215. doi: 10.1007/978-1-60327-931-4_14.

Abstract

Noninvasive cellular imaging allows the real-time tracking of grafted cells as well as the monitoring of their migration. Several techniques for in vivo cellular imaging are available that permit the characterization of transplanted cells in a living organism, including magnetic resonance imaging (MRI), bioluminescence, positron emission tomography, and multiple photon microscopy. All of these methods, based on different principles, provide distinctive, usually complementary information. In this review, we will focus on cell tracking using MRI, since MRI is noninvasive, clinically transferable, and displays good resolution, ranging from 50microm in animal experiments up to 300microm using whole body clinical scanners. In addition to information about grafted cells, MRI provides information about the surrounding tissue (i.e., lesion size, edema, inflammation), which may negatively affect graft survival or the functional recovery of the tissue. Transplanted cells are labeled with MR contrast agents in vitro prior to transplantation in order to visualize them in the host tissue. The chapter will focus on the use of superparamagnetic iron oxide nanoparticles (SPIO), because they have strong effects on T2 relaxation yet do not affect cell viability, and will provide an overview of different modifications of SPIO and their use in MR tracking in living organisms.

摘要

非侵入性细胞成像能够实时追踪移植细胞及其迁移情况。目前有多种用于体内细胞成像的技术,可在活体生物中对移植细胞进行表征,包括磁共振成像(MRI)、生物发光、正电子发射断层扫描和多光子显微镜。所有这些基于不同原理的方法都能提供独特的、通常具有互补性的信息。在本综述中,我们将重点关注使用MRI进行细胞追踪,因为MRI具有非侵入性、可临床应用且分辨率良好的特点,在动物实验中分辨率可达50微米,使用全身临床扫描仪时可达300微米。除了有关移植细胞的信息外,MRI还能提供周围组织的信息(即病变大小、水肿、炎症),这些可能会对移植细胞存活或组织功能恢复产生负面影响。移植前在体外使用磁共振对比剂对细胞进行标记,以便在宿主组织中观察它们。本章将重点介绍超顺磁性氧化铁纳米颗粒(SPIO)的应用,因为它们对T2弛豫有强烈影响,但不影响细胞活力,并将概述SPIO的不同修饰及其在活体生物磁共振追踪中的应用。

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