Source: Bello-Gamboa, A. et al., Imaging the Human Immunological Synapse. J. Vis. Exp. (2019)
This video demonstrates the in vitro study of immunological synapse formation between an antigen-presenting cell and helper T lymphocytes using a fluorescence microscope. T cell receptors of helper T lymphocytes interact with an antigen-MHC-II complex in antigen-presenting cells and form immunological synapses, followed by secretory vesicle movements toward the synapse, which is visualized by fluorescent microscopy.
1. Preparation of Slides to Adhere Raji Cells
2. Adhesion of Raji Cells to the Chamber Slides and 7-amino-4-chloromethylcoumarin (CMAC) Labeling
3. Pulse of CMAC — Labeled Raji Cells with Staphylococcal Enterotoxin E
4. Preparation of Jurkat Cells
5. Co-seeding of Raji and Jurkat Cells
6. Time-Lapse Imaging of Emerging Synaptic Conjugates
Figure 1 represents synaptic Jurkat-Raji conjugates that were obtained following the protocol (step 5.2). The image represents the first frame from a representative, time-lapse experiment. 2 x 105 Raji cells and 2 x 105 Jurkat cells were added to a 1 cm2 well. The upper panel shows transmittance channel, the middle panel consists of CMAC (blue) channel (Raji cells), and the lower panel shows both transmittance plus CMAC merged channels. Yellow arrows label some synaptic conjugates, as a reference, whereas green arrows indicate synaptic conjugates made by one Jurkat cell and several Raji cells (complex conjugates). Decreasing cell concentrations (105 or less cells in the 1 cm2 well) will circumvent the formation of complex cellular conjugates, but there may not be enough cell conjugates for subsequent analysis of polarized traffic (see below), that in turn will decrease also the chances to find and to image emerging synaptic conjugates.
Figure 2 represents screenshots corresponding to the imaging parameters used for the simultaneous capture of the two different fluorochromes (CMAC and GFP-CD63) by using appropriate software (i.e., NIKON NIS_AR) in a representative time-lapse experiment.
The authors have nothing to disclose.
Camera Nikon DS-QI1MC | Nikon | MQA11550 | Cooled Camera Head |
CMAC | ThermoFisher Scientific | C2110 | Cell tracker blue |
JURKAT cells | ATCC | ATCC TIB-152 | Effector T lymphocytes |
μ-Slide 8 well ibiTreat, μ-Slide 8 well Glass-Bottom | IBIDI | Cat.No: 80826, 80827 | Cell culture and cell imaging supports |
Microscope NIKON Eclipse Ti-E | Nikon | NIKON Eclipse Ti-E | Wide-field fluorescence, fully-motorized microscope equipped with Perfect Focus System (PFS) option |
Microscope Stage Incubator with 3-channel manual gas mixer and gas bubbler/ humidity module | OKOLAB | H201-NIKON-TI-S-ER | Cell culture atmosphere |
Raji Cells | ATCC | ATCC CCL-86 | APC |
RPMI medium GIBCO | ThermoFisher Scientific | 21875034 | Culture medium |
Streptococcus Enterotoxin E (SEE) | Toxin Technology, Inc | EP404 | Bacterial Toxin |
Software Image J | NIH | Image J | Image software |
Software Nikon NIS-AR | Nikon | NIS-Elements AR | Image capture and analysis software |