Zhuo Yue, Choi Ji Sun, Marin Thibault, Yu Hojeong, Harley Brendan A, Cunningham Brian T
Department of Bioengineering, University of Illinois at Urbana-Champaign, Urbana, IL 61801, USA.
Micro and Nanotechnology Laboratory, University of Illinois at Urbana- Champaign, Urbana, IL 61801, USA.
Light Sci Appl. 2018;7. doi: 10.1038/s41377-018-0001-5. Epub 2018 May 30.
Focal adhesions are critical cell membrane components that regulate adhesion and migration and have cluster dimensions that correlate closely with adhesion engagement and migration speed. We utilized a label-free approach for dynamic, long-term, quantitative imaging of cell-surface interactions called photonic resonator outcoupler microscopy (PROM) in which membrane-associated protein aggregates outcoupled photons from the resonant evanescent field of a photonic crystal biosensor, resulting in a highly localized reduction of the reflected light intensity. By mapping the changes in the resonant reflected peak intensity from the biosensor surface, we demonstrate the ability of PROM to detect focal adhesion dimensions. Similar spatial distributions can be observed between PROM images and fluorescence-labeled images of focal adhesion areas in dental epithelial stem cells. In particular, we demonstrate that cell-surface contacts and focal adhesion formation can be imaged by two orthogonal label-free modalities in PROM simultaneously, providing a general-purpose tool for kinetic, high axial-resolution monitoring of cell interactions with basement membranes.
粘着斑是关键的细胞膜成分,可调节粘附和迁移,其簇尺寸与粘附参与度和迁移速度密切相关。我们采用了一种无标记方法,即光子谐振器外耦合显微镜(PROM),用于细胞表面相互作用的动态、长期、定量成像。在该方法中,与膜相关的蛋白质聚集体从光子晶体生物传感器的谐振倏逝场中外耦合光子,导致反射光强度高度局部降低。通过绘制生物传感器表面谐振反射峰强度的变化,我们证明了PROM检测粘着斑尺寸的能力。在牙上皮干细胞粘着斑区域的PROM图像和荧光标记图像之间可以观察到类似的空间分布。特别是,我们证明了细胞表面接触和粘着斑形成可以在PROM中通过两种正交的无标记模式同时成像,为细胞与基底膜相互作用的动力学、高轴向分辨率监测提供了一种通用工具。