Joint Biomedical Engineering Department, University of North Carolina at Chapel Hill, North Carolina State University, Chapel Hill, NC, 27599, USA.
Pharmacology Department, University of North Carolina at Chapel Hill, Chapel Hill, NC, 27599, USA.
Lab Chip. 2021 Dec 21;22(1):136-147. doi: 10.1039/d1lc00600b.
We present a microfluidic device compatible with high resolution light sheet and super-resolution microscopy. The device is a 150 μm thick chamber with a transparent fluorinated ethylene propylene (FEP) cover that has a similar refractive index (1.34) to water (1.33), making it compatible with top-down imaging used in light sheet microscopy. We provide a detailed fabrication protocol and characterize the optical performance of the device. We demonstrate that the device supports long-term imaging of cell growth and differentiation as well as the rapid addition and removal of reagents while simultaneously maintaining sterile culture conditions by physically isolating the sample from the dipping lenses used for imaging. Finally, we demonstrate that the device can be used for super-resolution imaging using lattice light sheet structured illumination microscopy (LLS-SIM) and DNA PAINT. We anticipate that FEP-based microfluidics, as shown here, will be broadly useful to researchers using light sheet microscopy due to the ability to switch reagents, image weakly adherent cells, maintain sterility, and physically isolate the specimen from the optics of the instruments.
我们提出了一种与高通量光片和超高分辨率显微镜兼容的微流控装置。该装置是一个 150μm 厚的腔室,带有透明的氟化乙烯丙烯(FEP)盖,其折射率(1.34)与水(1.33)相似,使其与光片显微镜中使用的自上而下成像兼容。我们提供了详细的制造协议,并对设备的光学性能进行了表征。我们证明,该设备可以支持细胞生长和分化的长期成像,以及快速添加和去除试剂,同时通过将样品与用于成像的浸液透镜物理隔离来保持无菌培养条件。最后,我们证明该设备可用于使用晶格光片结构照明显微镜(LLS-SIM)和 DNA PAINT 进行超分辨率成像。我们预计,由于能够切换试剂、对弱贴壁细胞成像、保持无菌性以及将样品与仪器的光学元件物理隔离,这里展示的基于 FEP 的微流控技术将广泛应用于使用光片显微镜的研究人员。