Immunological Synapse Formation

Immunological synapse formation is the organized assembly of a contact interface between an immune cell and a target or antigen-presenting cell, enabling specific communication and activation. It begins when a T-cell receptor recognizes peptide–MHC complexes, while adhesion molecules such as LFA-1 bind ICAM-1 to stabilize contact; signaling proteins and the actin cytoskeleton then rearrange into distinct molecular regions. This architecture concentrates receptors, kinases, and secretory machinery, allowing T cells to integrate signals and, when appropriate, direct cytokine release or cytotoxic granules toward the target. Studying synapse formation clarifies immune recognition, inflammation, and immune-cell killing, while informing vaccine research, immunotherapy, and investigations of immune dysfunction.

Immunological Synapse Formation - Related Videos

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JoVE EoE - Immune Systems and Components

Immunological Synapse Formation Between Helper T Cells and Antigen-Presenting Cells

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2025

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.

Supported Planar Bilayers for the Formation of Study of Immunological Synapses and Kinapse

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Cited by 17 •

2008

Supported planar bilayers are powerful tools that can be used to model the molecular interactions in an immunological synapse. Here, we show methods for anchoring cell adhesion proteins known to modulate synapse formation to the upper leaflet of the lipid bilyer and visualize synapse formation using TIRF microscopy.

In Vitro Bacterial Transinfection of T Cells via Immunological Synapse Formation

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2025

Source: Cruz-Adalia, A., et al. T Cells Capture Bacteria by Transinfection from Dendritic Cells. J. Vis. Exp. (2016).This video demonstrates bacterial transinfection through antigen-specific T cell–dendritic cell interactions. Bacteria-infected dendritic cells presenting ovalbumin peptide are incubated with T cells, either directly or separated by a membrane. Direct contact allows immunological synapse formation, enabling bacterial transfer, while the membrane prevents interaction. Gentamicin...

Assessing Immunological Synapse Topology through Live-Cell Imaging

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2025

This video demonstrates live-cell imaging of immunological synapse topology, investigating the interactions between T lymphocytes and epithelial cells carrying fluorescent antigens. Fluorescence microscopy reveals red cytoplasm displacement and yellow membrane rings in endothelial cells, indicating the formation of immunological synapses.

Super-Resolution Imaging of NK Cell Immunological Synapse Formation on a Supported Lipid Bilayer

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2025

This video demonstrates a technique for visualizing the formation of the immunological synapse in natural killer (NK) cells on a supported lipid bilayer (SLB). The SLB is first labeled with a fluorophore-tagged NK cell activating receptor ligand, followed by incubation with NK cells. Subsequently, the cells are stained for polymerized actin and perforin-positive lytic granules. This approach enables the visualization of synapse formation using stimulated emission depletion (STED) microscopy.

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