登录

Cell separation was first achieved in 1964 by S. H. Seal, who separated large tumor cells from the smaller blood cells using filtration. Two years later, Pohl and Hawk performed experiments on how cells respond differently to a nonuniform electric field based on the cell type. Such observations were the inception of cell separation methods, which allow isolating a single cell type from a heterogeneous sample.

Commonly used cell separation techniques include filtration, density gradient centrifugation, affinity-based separation using antibodies, and flow cytometric cell sorting. Additional specialized techniques include aptamer technology, buoyancy-activated cell sorting, and laser capture microdissection. The choice of separation method is based on the characteristics of the cell type to be isolated, such as surface charge, cell size, density, morphology, physiology, and surface markers. Usually, one or more of these characteristics are employed to isolate the particular cell type efficiently.

Applications of Cell Separation and Isolation

Isolated cells can be grown in vitro to produce cell lines, which have numerous applications in areas like pharmacology, immunology, and stem cell therapy. For example, the in vitro effects of drugs can be analyzed on specific cell populations. Cell separation is also essential in screening for the appropriate B-cells for monoclonal antibody production. Single-cell analysis, such as studying gene expression patterns and epigenetic effects, also relies on the isolation of specific cells to study. Many oncological studies that contribute to our understanding of cancer cells require isolating particular tumor cells from the tissue. Thus, cell separation and isolation methods are used virtually in all major fields of modern biology.

Challenges of Cell Separation Methods

Cell separation techniques face a high noise-to-signal ratio, with a small number of specific cells (target) against a large number of varied components that form the tissue. Various factors affect the purity of the final isolate; hence, the protocols require standardization for each target cell type and application. For example, the efficiency of cells dissociating from the tissue decides the yield of isolated cells. Excess digestion increases the presence of dead cells in the isolate, whereas incomplete digestion results in cell type contamination. Cell type contamination can also occur in affinity-based cell separation. While labeling a particular cell type with specific antibodies, non-specific binding may occur, introducing different cells into the preparation. Additionally, the population size of the target cell type in the tissue is also a limiting factor — low-abundance cells often need tedious protocols to yield sufficient numbers in the isolated cell populations.

Tags
Cell SeparationCell IsolationFiltrationDensity Gradient CentrifugationAffinity based SeparationFlow Cytometric SortingSingle cell AnalysisTumor CellsIn Vitro ApplicationsB cellsMonoclonal Antibody ProductionEpigeneticsOncological StudiesCell Type Contamination

来自章节 32:

article

Now Playing

32.1 : Overview Of Cell Separation And Isolation

Analyzing Cells and Proteins

5.3K Views

article

32.2 : 细胞培养

Analyzing Cells and Proteins

15.9K Views

article

32.3 : 细胞系

Analyzing Cells and Proteins

6.8K Views

article

32.4 : 杂交瘤技术

Analyzing Cells and Proteins

13.3K Views

article

32.5 : 组织匀浆和细胞裂解

Analyzing Cells and Proteins

7.0K Views

article

32.6 : 亚细胞组分分离

Analyzing Cells and Proteins

6.4K Views

article

32.7 : 流式细胞术

Analyzing Cells and Proteins

11.4K Views

article

32.8 : 柱色谱原理

Analyzing Cells and Proteins

6.4K Views

article

32.9 : 柱色谱的类型

Analyzing Cells and Proteins

10.6K Views

article

32.10 : 免疫沉淀

Analyzing Cells and Proteins

5.1K Views

article

32.11 : 标记和融合蛋白

Analyzing Cells and Proteins

6.5K Views

article

32.12 : SDS 页面

Analyzing Cells and Proteins

26.0K Views

article

32.13 : 蛋白质印迹

Analyzing Cells and Proteins

14.0K Views

article

32.14 : 二维凝胶电泳

Analyzing Cells and Proteins

5.5K Views

article

32.15 : 酶联免疫吸附测定

Analyzing Cells and Proteins

11.8K Views

See More

JoVE Logo

政策

使用条款

隐私

科研

教育

关于 JoVE

版权所属 © 2025 MyJoVE 公司版权所有,本公司不涉及任何医疗业务和医疗服务。