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Updated: Aug 9, 2026

Static Adhesion Assay for the Study of Integrin Activation in T Lymphocytes
Published on: June 13, 2014
Role of lymphocyte adhesion receptors in transient interactions and cell locomotion
1Center for Blood Research, Boston, Massachusetts.
Insights
Lymphocyte adhesion, crucial for immune responses, is regulated by distinct mechanisms. T-cell activation dynamically alters adhesion receptor avidity, influencing cell interactions and recirculation.
Area of Science:
- Immunology
- Cell Biology
- Biophysics
Background:
- Lymphocyte adhesion is vital for immune recognition and recirculation.
- Adhesion receptors mediate interactions with other cells and the extracellular matrix.
- Understanding these mechanisms is key to deciphering immune cell behavior.
Purpose of the Study:
- To review the regulation of lymphocyte adhesion.
- To explore how lymphocytes use adhesion to sense their environment.
- To discuss the roles of CD2, LFA-1, and integrins in T-cell activation and function.
Main Methods:
- Review of existing literature on lymphocyte adhesion mechanisms.
- Analysis of studies on CD2/LFA-3 and LFA-1/ICAM interactions.
- Presentation of a model for LFA-3 lateral diffusion in adhesion.
Main Results:
- CD2/LFA-3 adhesion is latent in resting T-cells, becoming active hours post-activation.
- LFA-1 avidity for ICAMs increases transiently within minutes of T-cell activation.
- Integrin avidity cycles are proposed to regulate locomotion, adhesion, and deadhesion.
Conclusions:
- Distinct adhesion pathways (CD2/LFA-3 vs. LFA-1/ICAM) are differentially regulated by T-cell activation.
- Integrin avidity cycles are crucial for dynamic cell behaviors like migration and adhesion.
- These adhesion mechanisms provide insights into lymphocyte recirculation and immune surveillance.
Abstract:
Lymphocytes adhere to other cells and extracellular matrix in the process of immunological recognition and lymphocyte recirculation. This review focuses on regulation of lymphocyte adhesion and the use of adhesion mechanisms by lymphocytes to obtain information about their immediate environment. The CD2 and LFA-1 adhesion receptors appear to have distinct roles in the regulation of adhesion and modulation of T lymphocyte activation. Adhesion mediated by interaction of CD2 with LFA-3 is dramatically altered by surface charge and adhesion receptor density in such a way that this pathway is latent in resting T lymphocytes but becomes active over a period of hours following T-cell activation. CD2 ligation can mediate or enhance T-cell activation, suggesting that signals from CD2/LFA-3 adhesive interactions are integrated with signals from the T-cell antigen receptor during immunological recognition. A model for the role of LFA-3 lateral diffusion in adhesion is presented, based on the lateral diffusion of different LFA-3 forms in glass supported planar membranes. Interaction of LFA-1 with ICAMs is also regulated by cell activation but in a different way than in interaction of CD2 with LFA-3. LFA-1 avidity for ICAMs is transiently increased by T-cell activation over a period of minutes. Cycles of avidity change are also observed for other T lymphocyte integrins which bind to extracellular matrix components. We propose that integrin avidity cycles may have an important role in the interconnected phenomena of locomotion, initial cell-cell adhesion, and cell-cell deadhesion. Recent observations on recirculation of T lymphocyte subpopulations are discussed in the context of general lessons learned from study of the CD2/LFA-3 and LFA-1/ICAM adhesion mechanisms.
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