16HBE14o- NTCC®温度控制繁殖型永生化人支气管上皮细胞株human bronchial epithelial cell line
BioVector NTCC质粒载体菌株细胞蛋白抗体基因保藏中心
The 16HBE14o- cell line is a human bronchial epithelial cell line that has been used extensively in respiratory research. It was derived from the normal human bronchial epithelium of a 3-year-old donor and immortalized with a temperature-sensitive SV40 large T antigen (SV40-T antigen) that allows for controlled proliferation of the cells at a non-permissive temperature.
Here are some key characteristics and features of the 16HBE14o- cell line:
Source: It was originally isolated from the bronchial epithelium of a child. The "14o-" designation refers to the specific subline of cells derived from this source.
Immortalization: The cells were immortalized using the SV40 large T antigen, which enables the cells to proliferate indefinitely under appropriate culture conditions.
Application:
This cell line is widely used in the study of respiratory diseases such as asthma, chronic obstructive pulmonary disease (COPD), cystic fibrosis, and pulmonary infections.
It serves as a model for studying airway epithelial cell function, including barrier function, ion transport, and response to inflammatory stimuli.
16HBE14o- cells have been used to study the mechanisms of respiratory infections, as they can be infected with various pathogens like Pseudomonas aeruginosa, influenza viruses, and other respiratory pathogens.
Characteristics:
The cells maintain some of the characteristics of airway epithelial cells, such as the expression of ciliated epithelial cell markers and the ability to form a tight monolayer under appropriate culture conditions.
The 16HBE14o- cell line can be cultured on permeable supports to form polarized monolayers, mimicking the epithelium in the respiratory tract.
Use in Studies: Researchers utilize these cells to investigate airway mucociliary clearance, cell-cell interactions, and host-pathogen interactions. This makes the cell line an important tool in pulmonary biology and the development of treatments for respiratory diseases.
Other Notable Information: The immortalization allows for more consistent and reproducible experiments, which makes this cell line a reliable model for in vitro studies of airway biology
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