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用于评估巨噬细胞吞噬作用和肌动蛋白聚合的高通量荧光技术。

High throughput fluorometric technique for assessment of macrophage phagocytosis and actin polymerization.

作者信息

Ninković Jana, Roy Sabita

机构信息

Department of Pharmacology, University of Minnesota; 3M Corporate Research Laboratory;

Department of Pharmacology, University of Minnesota; Department of Surgery, University of Minnesota.

出版信息

J Vis Exp. 2014 Nov 27(93):e52195. doi: 10.3791/52195.

Abstract

The goal of fluorometric analysis is to serve as an efficient, cost effective, high throughput method of analyzing phagocytosis and other cellular processes. This technique can be used on a variety of cell types, both adherent and non-adherent, to examine a variety of cellular properties. When studying phagocytosis, fluorometric technique utilizes phagocytic cell types such as macrophages, and fluorescently labeled opsonized particles whose fluorescence can be extinguished in the presence of trypan blue. Following plating of adherent macrophages in 96-well plates, fluorescent particles (green or red) are administered and cells are allowed to phagocytose for varied amounts of time. Following internalization of fluorescent particles, cells are washed with trypan blue, which facilitates extinction of fluorescent signal from bacteria which are not internalized, or are merely adhering to the cell surface. Following the trypan wash, cells are washed with PBS, fixed, and stained with DAPI (nuclear blue fluorescent label), which serves to label nuclei of cells. By a simple fluorometric quantification through plate reading of nuclear (blue) or particle (red/green) fluorescence we can examine the ratio of relative fluorescence units of green:blue and determine a phagocytic index indicative of amount of fluorescent bacteria internalized per cell. The duration of assay using a 96-well method and multichannel pipettes for washing, from end of phagocytosis to end of data acquisition, is less than 45 min. Flow cytometry could be used in a similar manner but the advantage of fluorometry is its high throughput, rapid method of assessment with minimal manipulation of samples and quick quantification of fluorescent intensity per cell. Similar strategies can be applied to non adherent cells, live labeled bacteria, actin polymerization, and essentially any process utilizing fluorescence. Therefore, fluorometry is a promising method for its low cost, high throughput capabilities in the study of cellular processes.

摘要

荧光分析的目的是作为一种高效、经济、高通量的方法来分析吞噬作用和其他细胞过程。该技术可用于多种细胞类型,包括贴壁细胞和非贴壁细胞,以检测各种细胞特性。在研究吞噬作用时,荧光技术利用吞噬细胞类型,如巨噬细胞,以及荧光标记的调理素化颗粒,其荧光在台盼蓝存在下可被淬灭。将贴壁巨噬细胞接种到96孔板中后,加入荧光颗粒(绿色或红色),让细胞吞噬不同时间。荧光颗粒内化后,用台盼蓝洗涤细胞,这有助于淬灭未内化或仅粘附在细胞表面的细菌的荧光信号。用台盼蓝洗涤后,用PBS洗涤细胞,固定并用DAPI(核蓝色荧光标记)染色,用于标记细胞核。通过对细胞核(蓝色)或颗粒(红色/绿色)荧光进行简单的荧光定量分析,我们可以检测绿色:蓝色相对荧光单位的比率,并确定一个吞噬指数,该指数表示每个细胞内化的荧光细菌数量。使用96孔方法和多通道移液器进行洗涤,从吞噬作用结束到数据采集结束,分析时间不到45分钟。流式细胞术也可以以类似的方式使用,但荧光分析的优点是其高通量、快速的评估方法,对样品的操作最少,并且能够快速定量每个细胞的荧光强度。类似的策略可以应用于非贴壁细胞、活标记细菌、肌动蛋白聚合,以及基本上任何利用荧光的过程。因此,荧光分析因其低成本、高通量能力,在细胞过程研究中是一种很有前景的方法。

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