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用于高灵敏度检测体内稀有循环细胞的改良弥散荧光流式细胞仪原型。

Improved diffuse fluorescence flow cytometer prototype for high sensitivity detection of rare circulating cells in vivo.

机构信息

Northeastern University, Department of Electrical and Computer Engineering, Boston, Massachusetts 02115, USA.

出版信息

J Biomed Opt. 2013 Jul;18(7):077002. doi: 10.1117/1.JBO.18.7.077002.

Abstract

Detection and enumeration of rare circulating cells in mice are important problems in many areas of preclinical biomedical research. Recently, we developed a new method termed "diffuse fluorescence flow cytometry" (DFFC) that uses diffuse photons to increase the blood sampling volume and sensitivity versus existing in vivo flow cytometry methods. In this work, we describe a new DFFC prototype with approximately an order-of-magnitude improvement in sensitivity compared to our previous work. This sensitivity improvement is enabled by a number of technical innovations, which include a method for the removal of motion artifacts (allowing interrogation of mouse hindlegs that was less optically attenuating versus the tail) and improved collection optics and signal preamplification. We validated our system first in limb mimicking optical flow phantoms with fluorescent microspheres and then in nude mice with fluorescently labeled mesenchymal stem cells at injected concentrations of 5×103  cells/mL. In combination, these improvements resulted in an overall cell counting sensitivity of about 1  cell/mL or better in vivo.

摘要

在许多临床前生物医学研究领域,检测和计数小鼠体内的稀有循环细胞是一个重要问题。最近,我们开发了一种新的方法,称为“漫射荧光流式细胞术”(DFFC),它利用漫射光子来增加血液采样量和灵敏度,与现有的体内流式细胞术方法相比。在这项工作中,我们描述了一种新的 DFFC 原型,与我们之前的工作相比,灵敏度提高了约一个数量级。这种灵敏度的提高得益于一些技术创新,包括一种去除运动伪影的方法(允许对老鼠后腿进行询问,与尾巴相比,后腿的光衰减较小),以及改进的收集光学器件和信号前置放大器。我们首先在具有荧光微球的肢体模拟光学流动体模中验证了我们的系统,然后在注射浓度为 5×103 个细胞/ml 的荧光标记间充质干细胞的裸鼠中进行了验证。总的来说,这些改进使我们的系统在体内的总体细胞计数灵敏度达到约 1 个细胞/ml 或更好。

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