Seo Jong Bae, Moody Mark, Koh Duk-Su
Department of Physiology and Biophysics, University of Washington, Seattle, Washington.
Physiol Rep. 2014 Apr 22;2(4):e12002. doi: 10.14814/phy2.12002. Print 2014.
Abstract Many epithelial cells form polarized monolayers under in vivo and in vitro conditions. Typically, epithelial cells are cultured for differentiation on insert systems where cells are plated on a porous filter membrane. Although the cultured monolayers have been a standard system to study epithelial physiology, there are some limits: The epithelial cells growing inside the commercial inserts are not optimal to visualize directly through lenses on inverted microscopes. The cell images are optically distorted and background fluorescence is bright due to the filter membrane positioned between the cells and the lens. In addition, the cells are not easily accessible by electrodes due to the presence of tall side walls. Here, we present the design, fabrication, and practical applications of an improved system for analysis of polarized epithelial monolayers. This new system allows (1) direct imaging of cells without an interfering filter membrane, (2) electrophysiological measurements, and (3) detection of apical secretion with minimal dilution. Therefore, our culture method is optimized to study differentiated epithelial cells at the single-cell and subcellular levels, and can be extended to other cell types with minor modifications.
摘要 许多上皮细胞在体内和体外条件下形成极化单层。通常,上皮细胞在插入系统上培养以进行分化,细胞接种在多孔滤膜上。尽管培养的单层一直是研究上皮生理学的标准系统,但存在一些局限性:在商业插入物内部生长的上皮细胞不太适合通过倒置显微镜的透镜直接观察。由于滤膜位于细胞和透镜之间,细胞图像会出现光学畸变且背景荧光较亮。此外,由于存在高侧壁,电极不易接触到细胞。在此,我们展示了一种用于分析极化上皮单层的改进系统的设计、制造和实际应用。这个新系统允许:(1)在没有干扰滤膜的情况下直接对细胞成像;(2)进行电生理测量;(3)以最小稀释度检测顶端分泌。因此,我们的培养方法经过优化,可在单细胞和亚细胞水平研究分化的上皮细胞,并且稍作修改即可扩展到其他细胞类型。