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Tracking Transplanted Stem Cells Using Magnetic Resonance Imaging and the Nanoparticle Labeling Method in Urology

机译:泌尿外科领域使用磁共振成像和纳米颗粒标记方法追踪干细胞

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摘要

A reliable in vivo imaging method to localize transplanted cells and monitor their viability would enable a systematic investigation of cell therapy. Most stem cell transplantation studies have used immunohistological staining, which does not provide information about the migration of transplanted cells in vivo in the same host. Molecular imaging visualizes targeted cells in a living host, which enables determining the biological processes occurring in transplanted stem cells. Molecular imaging with labeled nanoparticles provides the opportunity to monitor transplanted cells noninvasively without sacrifice and to repeatedly evaluate them. Among several molecular imaging techniques, magnetic resonance imaging (MRI) provides high resolution and sensitivity of transplanted cells. MRI is a powerful noninvasive imaging modality with excellent image resolution for studying cellular dynamics. Several types of nanoparticles including superparamagnetic iron oxide nanoparticles and magnetic nanoparticles have been used to magnetically label stem cells and monitor viability by MRI in the urologic field. This review focuses on the current role and limitations of MRI with labeled nanoparticles for tracking transplanted stem cells in urology.
机译:一种可靠的体内成像方法可以定位移植的细胞并监测其生存能力,从而可以对细胞疗法进行系统的研究。大多数干细胞移植研究都使用了免疫组织学染色法,该染色法不提供有关在同一宿主体内体内移植细胞迁移的信息。分子成像使活体宿主中的靶细胞可视化,从而可以确定移植的干细胞中发生的生物学过程。用标记的纳米颗粒进行分子成像可提供无损监测移植细胞而无损牺牲并对其进行重复评估的机会。在几种分子成像技术中,磁共振成像(MRI)提供了高分辨率和高灵敏度的移植细胞。 MRI是一种功能强大的无创成像手段,具有出色的图像分辨率,可用于研究细胞动力学。包括超顺磁性氧化铁纳米颗粒和磁性纳米颗粒在内的几种类型的纳米颗粒已被用于磁性标记干细胞并通过MRI在泌尿外科领域监测生存能力。这项审查集中在当前的作用和MRI标记的纳米粒子跟踪泌尿外科移植干细胞的局限性。

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