Human T lymphocyte adhesion to endothelial cells and transendothelial migration. Alteration of receptor use relates to the activation status of both the T cell and the endothelial cell.
Open Access
- 1 July 1990
- journal article
- research article
- Published by Oxford University Press (OUP) in The Journal of Immunology
- Vol. 145 (1) , 140-148
- https://doi.org/10.4049/jimmunol.145.1.140
Abstract
An in vitro model of T cell adhesion to human umbilical vein endothelial cells (HUVEC) and transendothelial migration was used to determine whether the activation state of the T cell or cytokine exposure of the HUVEC altered T cell-HUVEC interactions or receptor utilization. Stimulation of T cells with the activator of protein kinase C, phorbol dibutyrate (PDB) alone or in combination with the calcium ionophore, ionomycin increased their binding to HUVEC. Much of the binding of control and activated T cells to HUVEC was mediated by leukocyte function-associated Ag-1 (LFA-1) (CD11a/CD18), because mAb to either chain of this molecule inhibited binding substantially, but not completely. Activation of HUVEC with IL-1 also increased binding of T cells. Binding of control T cells to IL-1-stimulated HUVEC, however, was found to be LFA-1 independent, because mAb to CD11a/CD18 failed to block the interaction. In contrast, binding of activated T cells to IL-1-stimulated HUVEC was partially inhibited by mAb to LFA-1. Binding of activated T cells to IL-1-stimulated HUVEC also involved CD44 because this interaction was partially blocked by mAb to this determinant. When T cell migration was analyzed, it was found that the migration of PDB-activated T cells was three to four-fold more than that of control T cells. Migration through HUVEC and random migration were both enhanced by PDB stimulation. However, when the T cells were costimulated with PDB and ionomycin, migration was not increased above that of control T cells. PDB-activated T cells appeared to use LFA-1 for migration regardless of the activation status of the HUVEC, because mAb to CD11a/CD18 partially blocked their migration after binding to HUVEC. There was also a modest inhibition of PDB-activated T cell migration by mAb to CD44. In contrast, migration of control T cells involved neither LFA-1 nor CD44. Finally, binding of control T cells to high endothelial venules of peripheral lymphoid tissue was found to be CD11a/CD18 and CD44 independent, and completely inhibited by activation with either PDB or the combination of PDB and ionomycin. These results demonstrate that T cells use LFA-1 and CD44 as well as other as yet unidentified adhesion receptors for interactions with HUVEC, and that use of these adhesion receptors is mutable and related to the activation state of the T cell and cytokine stimulation of the HUVEC.This publication has 33 references indexed in Scilit:
- Phorbol ester-stimulated T lymphocytes show enhanced adhesion to human endothelial cell monolayers.The Journal of Immunology, 1986
- A Distinct Endothelial Cell Recognition System That Controls Lymphocyte Traffic into Inflamed SynoviumScience, 1986
- Induction by IL 1 and interferon-gamma: tissue distribution, biochemistry, and function of a natural adherence molecule (ICAM-1).The Journal of Immunology, 1986
- Binding of normal human mononuclear cells to blood vessels in rheumatoid arthritis synovial membraneArthritis & Rheumatism, 1986
- The requirement for lymphocyte function-associated antigen 1 in homotypic leukocyte adhesion stimulated by phorbol ester.The Journal of Experimental Medicine, 1986
- THE LOCOMOTOR CAPACITY OF HUMAN-LYMPHOCYTES AND ITS ENHANCEMENT BY CELL-GROWTH1986
- Adhesion of T lymphocytes to human endothelial cells is regulated by the LFA‐1 membrane moleculeJournal of Cellular Physiology, 1986
- Induction of expression and phosphorylation of the human interleukin 2 receptor by a phorbol diester.Journal of Biological Chemistry, 1984
- Relationship of cell cycle to recovery of IL 2 activity from human mononuclear cells, human and mouse T cell lines.The Journal of Immunology, 1981
- Studies on the mechanism of phagocytosis. I. Requirements for circumferential attachment of particle-bound ligands to specific receptors on the macrophage plasma membrane.The Journal of Experimental Medicine, 1975