Kim Jung Eun, Kalimuthu Senthilkumar, Ahn Byeong-Cheol
Department of Nuclear Medicine, Kyungpook National University School of Medicine and Hospital, 50, Samduk 2-ga, Jung Gu, Daegu, Republic of Korea 700-721.
Nucl Med Mol Imaging. 2015 Mar;49(1):3-10. doi: 10.1007/s13139-014-0309-x. Epub 2014 Nov 26.
Molecular imaging is a fast growing biomedical research that allows the visual representation, characterization and quantification of biological processes at the cellular and subcellular levels within intact living organisms. In vivo tracking of cells is an indispensable technology for development and optimization of cell therapy for replacement or renewal of damaged or diseased tissue using transplanted cells, often autologous cells. With outstanding advantages of bioluminescence imaging, the imaging approach is most commonly applied for in vivo monitoring of transplanted stem cells or immune cells in order to assess viability of administered cells with therapeutic efficacy in preclinical small animal models. In this review, a general overview of bioluminescence is provided and recent updates of in vivo cell tracking using the bioluminescence signal are discussed.
分子成像是一项快速发展的生物医学研究领域,它能够在完整的活体生物体内,对细胞和亚细胞水平的生物过程进行可视化呈现、特征描述及定量分析。体内细胞追踪是利用移植细胞(通常为自体细胞)替代或更新受损或患病组织的细胞治疗开发与优化过程中不可或缺的技术。凭借生物发光成像的突出优势,这种成像方法最常用于在体内监测移植的干细胞或免疫细胞,以便在临床前小动物模型中评估给药细胞的活力及其治疗效果。在本综述中,我们将对生物发光进行概述,并讨论利用生物发光信号进行体内细胞追踪的最新进展。