BioPhysics Assay Laboratory, Inc, 80 Webster St, Worcester, MA 01603, USA.
J Cardiovasc Transl Res. 2008 Sep;1(3):217-20. doi: 10.1007/s12265-008-9039-8. Epub 2008 Jul 8.
Tracking cells in regenerative medicine is becoming increasingly important for basic cell therapy science, for cell delivery optimization and for accurate biodistribution studies. This report describes nanoparticles that utilize stable-isotope metal labels for multiple detection technologies in preclinical studies. Cells labeled with nanoparticles can be imaged by electron microscopy, fluorescence, and magnetic resonance. The nanoparticle-labeled cells can be quantified by neutron activation, thereby allowing, with the use of standard curves, the determination of the number of labeled cells in tissue samples from in vivo sources. This report describes the characteristics of these nanoparticles and methods for using these nanoparticles to label and track cells.
在再生医学中,对细胞进行追踪对于基础细胞治疗科学、细胞递送优化和准确的生物分布研究变得越来越重要。本报告描述了利用稳定同位素金属标记的纳米粒子,可用于临床前研究中的多种检测技术。用纳米粒子标记的细胞可以通过电子显微镜、荧光和磁共振成像进行观察。通过中子激活对纳米粒子标记的细胞进行定量,从而可以使用标准曲线确定来自体内来源的组织样本中标记细胞的数量。本报告介绍了这些纳米粒子的特性和使用这些纳米粒子标记和追踪细胞的方法。