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June 15, 1994The Journal of Cell Biology382 citationsOpen Access

Monocyte rolling, arrest and spreading on IL-4-activated vascular endothelium under flow is mediated via sequential action of L-selectin, beta 1-integrins, and beta 2-integrins.

FLF W LuscinskasGKGeoffrey S. KansasHDHan Ting Ding

Key Points

  • This study aims to investigate how monocytes interact with IL-4-activated vascular endothelium under flow conditions, focusing on adhesion mechanisms.
  • Used IL-4-activated human umbilical vein endothelium to mimic microcirculatory flow conditions.
  • Employed function-blocking monoclonal antibodies to study monocyte-endothelial interactions in vitro.
  • Examined the sequential action of L-selectin, alpha 4 beta 1-integrin, and beta 2-integrins in the adhesion process.
  • L-selectin mediates initial rolling of monocytes on the endothelial surface.
  • Alpha 4 beta 1-integrin is crucial for stable arrest of monocytes, facilitated by L-selectin.
  • Beta 2-integrins are necessary for the spreading of monocytes but not for their arrest on endothelial cells.

Abstract

Leukocyte interactions with vascular endothelium at sites of inflammation can be dynamically regulated by activation-dependent adhesion molecules. Current models, primarily based on studies with polymorphonuclear leukocytes, suggest the involvement of multiple members of the selectin, integrin, and immunoglobulin gene families, sequentially, in the process of initial attachment (rolling), stable adhesion (arrest), spreading and ultimate diapedesis. In the current study, IL-4-activated human umbilical vein endothelium, which selectively expresses VCAM-1 and an L-selectin ligand but not E-selectin, and appropriate function blocking monoclonal antibodies, were used to study monocyte-endothelial interactions in an in vitro model that mimics microcirculatory flow conditions. In this system, L-selectin mediates monocyte rolling and also facilitates alpha 4 beta 1-integrin-dependent arrest, whereas beta 2-integrins are required for spreading of firmly attached monocytes on the endothelial cell surface but not their arrest. These findings provide the first in vitro evidence for human monocyte rolling on cytokine-activated endothelium, and suggest a sequential requirement for both beta 1- and beta 2-integrin-dependent adhesive mechanisms in monocyte-endothelial interactions.

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Cite This Study

Luscinskas et al. (1994) studied this question.

synapsesocial.com/papers/6a07ce363b74a5c40d55cd9ahttps://doi.org/10.1083/jcb.125.6.1417
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