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成像膜插入近红外染料以追踪多个细胞群体。

Imaging membrane intercalating near infrared dyes to track multiple cell populations.

作者信息

Roy Edward J, Sivaguru Mayandi, Fried Glenn, Gray Brian D, Kranz David M

机构信息

Department of Molecular and Integrative Physiology, University of Illinois at Urbana-Champaign, Urbana, IL 61801 USA.

出版信息

J Immunol Methods. 2009 Aug 31;348(1-2):18-29. doi: 10.1016/j.jim.2009.06.006. Epub 2009 Jun 24.

Abstract

Given the increasing interest in understanding in vivo migration of different cell types, it would be useful to have a simple method for tracking multiple cell populations in animals. Here we evaluated near infrared (NIR) dyes that intercalate into cell membranes as cell tracking labels, using both high-throughput and high-resolution methods. We tracked cells in tissues containing significant autofluorescence. CellVue Burgundy (ex 683/em 707) and CellVue NIR815 (ex 786/em 814) are especially useful because their spectral properties match the laser and detectors of the LI-COR laser scanner. After labeling cells ex vivo and injecting them into tumor-bearing mice, the distribution of cells in tumor and organs could be quantified in tissue sections with high throughput by scanning many slides at once. For example, we compared brain tumor infiltration and organ distribution of naïve and activated lymphocytes in single animals. High-resolution microscopic examination of the same tissues could be done by a relatively inexpensive modification of an epifluorescence microscope using a custom designed diode laser light source. Light emitting diodes that emit 685 nm and 780 nm light allowed microscopic visualization of the NIR labeled cells in tissues. The NIR dye-labeled cells were visualized with a greater signal/noise ratio compared to visible wavelength dyes such as CFSE, because of the low levels of autofluorescence in the NIR range. We also describe a simple modification of immunohistochemical procedures that allows combined visualization of the hydrophobic NIR dyes and antibody probes of cell markers in unfixed tissue. In combination these techniques will facilitate cell tracking in vivo.

摘要

鉴于人们对了解不同细胞类型的体内迁移越来越感兴趣,拥有一种简单的方法来追踪动物体内的多种细胞群体将很有用。在这里,我们使用高通量和高分辨率方法,评估了可插入细胞膜作为细胞追踪标记的近红外(NIR)染料。我们追踪了含有大量自发荧光的组织中的细胞。CellVue Burgundy(激发波长683/发射波长707)和CellVue NIR815(激发波长786/发射波长814)特别有用,因为它们的光谱特性与LI-COR激光扫描仪的激光和探测器相匹配。在体外标记细胞并将其注射到荷瘤小鼠体内后,通过一次扫描多张切片,可以高通量地定量肿瘤和器官中细胞的分布。例如,我们比较了单只动物中幼稚和活化淋巴细胞的脑肿瘤浸润和器官分布。通过使用定制设计的二极管激光光源对落射荧光显微镜进行相对便宜的改装,可以对相同组织进行高分辨率显微镜检查。发射685 nm和780 nm光的发光二极管能够在显微镜下观察组织中近红外标记的细胞。与CFSE等可见波长染料相比,近红外染料标记的细胞具有更高的信噪比,这是因为近红外范围内的自发荧光水平较低。我们还描述了一种免疫组织化学程序的简单改进方法,该方法允许在未固定的组织中同时可视化疏水性近红外染料和细胞标记物的抗体探针。这些技术相结合将有助于体内细胞追踪。

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