Suppr超能文献

通过荧光激活细胞分选术(FACS)纯化特定细胞群体。

Purification of specific cell population by fluorescence activated cell sorting (FACS).

作者信息

Basu Sreemanti, Campbell Hope M, Dittel Bonnie N, Ray Avijit

机构信息

Blood Research Institute, Blood Center of Wisconsin, USA.

出版信息

J Vis Exp. 2010 Jul 10(41):1546. doi: 10.3791/1546.

Abstract

Experimental and clinical studies often require highly purified cell populations. FACS is a technique of choice to purify cell populations of known phenotype. Other bulk methods of purification include panning, complement depletion and magnetic bead separation. However, FACS has several advantages over other available methods. FACS is the preferred method when very high purity of the desired population is required, when the target cell population expresses a very low level of the identifying marker or when cell populations require separation based on differential marker density. In addition, FACS is the only available purification technique to isolate cells based on internal staining or intracellular protein expression, such as a genetically modified fluorescent protein marker. FACS allows the purification of individual cells based on size, granularity and fluorescence. In order to purify cells of interest, they are first stained with fluorescently-tagged monoclonal antibodies (mAb), which recognize specific surface markers on the desired cell population (1). Negative selection of unstained cells is also possible. FACS purification requires a flow cytometer with sorting capacity and the appropriate software. For FACS, cells in suspension are passed as a stream in droplets with each containing a single cell in front of a laser. The fluorescence detection system detects cells of interest based on predetermined fluorescent parameters of the cells. The instrument applies a charge to the droplet containing a cell of interest and an electrostatic deflection system facilitates collection of the charged droplets into appropriate collection tubes (2). The success of staining and thereby sorting depends largely on the selection of the identifying markers and the choice of mAb. Sorting parameters can be adjusted depending on the requirement of purity and yield. Although FACS requires specialized equipment and personnel training, it is the method of choice for isolation of highly purified cell populations.

摘要

实验和临床研究通常需要高度纯化的细胞群体。荧光激活细胞分选术(FACS)是纯化已知表型细胞群体的首选技术。其他大量纯化方法包括淘选、补体去除和磁珠分离。然而,FACS相对于其他现有方法具有几个优势。当需要非常高纯度的目标群体、目标细胞群体表达极低水平的识别标记或细胞群体需要基于差异标记密度进行分离时,FACS是首选方法。此外,FACS是唯一可用于基于内部染色或细胞内蛋白质表达(如基因改造的荧光蛋白标记)分离细胞的纯化技术。FACS允许根据大小、粒度和荧光纯化单个细胞。为了纯化感兴趣的细胞,首先用荧光标记的单克隆抗体(mAb)对其进行染色,这些抗体识别目标细胞群体上的特定表面标记(1)。对未染色细胞进行阴性分选也是可能的。FACS纯化需要一台具有分选能力的流式细胞仪和合适的软件。对于FACS,悬浮液中的细胞以液滴流的形式通过激光前,每个液滴包含一个单细胞。荧光检测系统根据细胞的预定荧光参数检测感兴趣的细胞。仪器对包含感兴趣细胞的液滴施加电荷,静电偏转系统便于将带电液滴收集到合适的收集管中(2)。染色以及分选的成功很大程度上取决于识别标记的选择和mAb的选择。分选参数可以根据纯度和产量的要求进行调整。尽管FACS需要专门的设备和人员培训,但它是分离高度纯化细胞群体的首选方法。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验