PMI R&D, Philip Morris Products S.A., Neuchâtel, Switzerland.
SLAS Technol. 2020 Jun;25(3):247-252. doi: 10.1177/2472630319895473. Epub 2020 Jan 23.
High-content imaging (HCI) is a powerful method for quantifying biological effects in vitro. Historically, HCI has been applied to adherent cells growing in monolayers. With the advent of confocal versions of HCI devices, researchers now have the option of performing analyses on 3D cell cultures. However, some obstacles remain in integrating the third dimension, such as limited light penetration and less sophisticated image analysis. Here, we report the development of an HCI technique for imaging human bronchial 3D organotypic air-liquid interface (ALI) cultures (hBR-ALI). In this method, we monitored differentiation status through HCI evaluation markers representative of ciliated epithelial cells and goblet cells (Muc5AC [mucin 5AC]). As a second use case for demonstrating the utility of this technique, we induced goblet cell hyperplasia in hBR-ALI by using interleukin (IL)-13. Our results demonstrate the utility of the HCI technique for imaging hBR-ALI grown on Transwell inserts. This technique may be expanded to other cell culture systems, such as skin epithelia and 3D intestinal systems.
高内涵成像(HCI)是一种体外定量生物学效应的强大方法。从历史上看,HCI 已应用于单层培养的贴壁细胞。随着 HCI 设备的共聚焦版本的出现,研究人员现在可以选择对 3D 细胞培养物进行分析。然而,在整合第三维方面仍然存在一些障碍,例如有限的光穿透和不太复杂的图像分析。在这里,我们报告了一种用于成像人支气管 3D 器官型气液界面(ALI)培养物(hBR-ALI)的 HCI 技术的发展。在这种方法中,我们通过代表纤毛上皮细胞和杯状细胞(Muc5AC[粘蛋白 5AC])的 HCI 评估标志物来监测分化状态。作为展示该技术实用性的第二个用例,我们通过使用白细胞介素(IL)-13 诱导 hBR-ALI 中的杯状细胞增生。我们的结果表明,HCI 技术可用于对 Transwell 插入物上生长的 hBR-ALI 进行成像。该技术可以扩展到其他细胞培养系统,例如皮肤上皮和 3D 肠道系统。