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Changes in cell adhesion molecule expression on T cells associated with systemic virus infection. | LitMetric

Changes in cell adhesion molecule expression on T cells associated with systemic virus infection.

J Immunol

Institute of Medical Microbiology and Immunology, University of Copenhagen, Panum Institute, Denmark.

Published: February 1994

AI Article Synopsis

  • The study examines how viruses alter adhesion molecule expression on T cells, which affects their movement towards infection sites.
  • After infection with lymphocytic choriomeningitis virus, CD8+ T cells showed increased levels of adhesion molecules like VLA-4 and LFA-1, while the lymph node homing receptor was decreased, with minimal changes in CD4+ cells.
  • The changes in adhesion molecule expression correlated with T cell activation markers and were linked to the movement of inflammatory cells into cerebrospinal fluid, suggesting that increased VLA-4 is crucial for T cell migration to inflammation sites.

Article Abstract

Virus-induced changes in adhesion molecule expression on T cells were investigated to understand how antiviral effector cells migrate into infectious foci. FACS analysis revealed that after systemic infection with lymphocytic choriomeningitis virus a number of cell adhesion molecules, including VLA-4, LFA-1, and ICAM-1, are up-regulated on CD8+ cells, whereas the lymph node homing receptor MEL-14 is down-regulated during the infection; only marginal changes were observed for CD4+ cells. Basically similar but less marked results were obtained in mice infected with Pichinde virus. Further analyses showed that T cells with a changed adhesion molecule profile tended to present other cell surface markers indicating a state of cellular activation, e.g., IL-2R, and included all virus-specific CTL effectors. Regarding the physiologic significance of these changes in adhesion molecule expression, it was found that up-regulation of VLA-4 expression on splenic T cells correlated with influx of inflammatory cells into the cerebrospinal fluid of intracerebrally infected animals, and that the number of CD8+VLA-4hi cells increased from lymph nodes and spleen to blood and cerebrospinal fluid. These results support the hypothesis that up-regulation of VLA-4 is important for effector T cell homing to sites of inflammation.

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