Northeastern University, Department of Electrical and Computer Engineering, Boston, Massachusetts 02115, USA.
J Biomed Opt. 2012 Mar;17(3):037001. doi: 10.1117/1.JBO.17.3.037001.
Accurate quantification of circulating cell populations in mice is important in many areas of preclinical biomedical research. Normally, this is done either by extraction and analysis of small blood samples or, more recently, by using microscopy-based in vivo fluorescence flow cytometry. We describe a new technological approach to this problem using detection of diffuse fluorescent light from relatively large blood vessels in vivo. The diffuse fluorescence flow cytometer (DFFC) uses a laser to illuminate a mouse limb and an array of optical fibers coupled to a high-sensitivity photomultiplier tube array operating in photon counting mode to detect weak fluorescence signals from cells. We first demonstrate that the DFFC instrument is capable of detecting fluorescent microspheres and Vybrant-DiD-labeled cells in a custom-made optical flow phantom with similar size, optical properties, linear flow rates, and autofluorescence as a mouse limb. We also present preliminary data demonstrating that the DFFC is capable of detecting circulating cells in nude mice in vivo. In principle, this device would allow interrogation of the whole blood volume of a mouse in minutes, with sensitivity improvement by several orders of magnitude compared to current approaches.
在许多临床前生物医学研究领域,准确量化小鼠循环细胞群体至关重要。通常,这可以通过提取和分析小的血液样本来完成,或者最近可以通过使用基于显微镜的体内荧光流式细胞术来完成。我们使用体内检测相对较大血管的漫射荧光的方法来解决这个问题,描述了一种新的技术方法。漫射荧光流式细胞仪 (DFFC) 使用激光照射小鼠的四肢,并用耦合到高灵敏度光电倍增管阵列的光纤阵列来检测细胞的弱荧光信号,该阵列以光子计数模式运行。我们首先证明 DFFC 仪器能够检测定制光学流动体模中的荧光微球和 Vybrant-DiD 标记的细胞,该体模具有与小鼠四肢相似的尺寸、光学特性、线性流速和自发荧光。我们还提供了初步数据,证明 DFFC 能够检测体内裸鼠的循环细胞。原则上,该设备可以在几分钟内检查小鼠的全血容量,与当前方法相比,灵敏度提高了几个数量级。