Immune Cell Forces

Immune cell forces are the mechanical pushes, pulls, and stresses that immune cells generate or experience as they move, recognize targets, and communicate with surrounding tissues. These forces arise primarily through actin–myosin cytoskeletal activity, which drives cell migration, deformation, adhesion, and the formation of force-dependent contacts with antigen-presenting cells or infected targets. In immunology and infection research, measuring these mechanical interactions helps explain how leukocytes navigate extracellular matrices, probe cellular surfaces, form immunological synapses, and engulf microbes. Force measurements can reveal how changes in tissue stiffness, adhesion, or pathogen properties influence immune activation, cell killing, and inflammatory responses.

Immune Cell Forces - Related Videos

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JoVE EoE - Immunodiagnostics

Using DNA-Based Tension Probes to Assess Receptor Forces Applied by Immune Cells

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2025

The video demonstrates a method for assessing receptor forces applied by immune cells using polyethylene glycol-anchored gold nanoparticles and DNA hairpin tension probes. CD8-positive T cell interactions trigger probe unfolding, emitting fluorescence while locking strands sustain the signal for quantifying the forces applied by immune cells.

Isolation of Functional Cardiac Immune Cells

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Cited by 9 •

2011

This method for isolating functional immune cells from the heart provides an alternative to the conventional methods of collagenase digestion, which causes unwanted immune cell activation, resulting in a decreased responsiveness of these cells. Our method of isolation yields functional cardiac immune cells by avoiding problems associated with enzymatic digestion.

Studying Organelle Dynamics in B Cells During Immune Synapse Formation

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Cited by 8 •

2019

Herein we describe two approaches to characterize cell polarization events in B lymphocytes during the formation of an IS. The first, involves quantification of organelle recruitment and cytoskeleton rearrangements at the synaptic membrane. The second is a biochemical approach, to characterize changes in composition of the centrosome, which undergoes polarization to the immune synapse.

Isolation, Characterization and Functional Examination of the Gingival Immune Cell Network

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Cited by 30 •

2016

We have established a technique for the isolation, phenotypic characterization and functional analysis of immune cells from murine gingiva.

DNA Tension Probes to Map the Transient Piconewton Receptor Forces by Immune Cells

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Cited by 9 •

2021

This paper describes a detailed protocol for using DNA-based tension probes to image the receptor forces applied by immune cells. This approach can map receptor forces >4.7pN in real-time and can integrate forces over time.

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