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Stem Cell Tracking Technologies for Neurological Regenerative Medicine Purposes

机译:用于神经再生医学的干细胞跟踪技术

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摘要

The growing field of stem cell therapy is moving toward clinical trials in a variety of applications, particularly for neurological diseases. However, this translation of cell therapies into humans has prompted a need to create innovative and breakthrough methods for stem cell tracing, to explore the migration routes and its reciprocity with microenvironment targets in the body, to monitor and track the outcome after stem cell transplantation therapy, and to track the distribution and cell viability of transplanted cells noninvasively and longitudinally. Recently, a larger number of cell tracking methods in vivo were developed and applied in animals and humans, including magnetic resonance imaging, nuclear medicine imaging, and optical imaging. This review has been intended to summarize the current use of those imaging tools in tracking stem cells, detailing their main features and drawbacks, including image resolution, tissue penetrating depth, and biosafety aspects. Finally, we address that multimodality imaging method will be a more potential tracking tool in the future clinical application.
机译:干细胞疗法的不断发展的领域正在朝着各种应用中的临床试验迈进,尤其是对于神经系统疾病。然而,这种将细胞疗法转化为人类的方法促使人们需要创建创新且突破性的干细胞追踪方法,以探索其迁移途径及其与体内微环境靶标的互易性,以监测和追踪干细胞移植治疗后的结果,并以无创和纵向方式跟踪移植细胞的分布和细胞活力。最近,开发了许多体内细胞跟踪方法并将其应用于动物和人类,包括磁共振成像,核医学成像和光学成像。这篇综述旨在总结这些成像工具在跟踪干细胞中的当前用途,详细介绍其主要特征和缺点,包括图像分辨率,组织穿透深度和生物安全性方面。最后,我们指出,多模态成像方法将在未来的临床应用中成为更有潜力的跟踪工具。

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