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May 1, 1994The FASEB Journal1,022 citationsOpen Access

Adhesion molecules and inflammatory injury

SASteven Μ. AlbeldaCSC. Wayne SmithPWPeter A. Ward

Key Points

  • This research aims to investigate how cell adhesion molecules (CAMs) influence neutrophil interactions during inflammation.
  • Utilized blocking antibodies and chimeric selectin-immunoglobulin proteins to study CAMs in vivo.
  • Examined sialyl Lewisx oligosaccharides and peptides in experiments.
  • Analyzed genetically determined adhesion deficiencies in human and animal models.
  • CAM blockade significantly inhibits inflammation, highlighting different adhesion requirements based on inflammation type.
  • Identified specific CAM and chemoattractant profiles associated with various inflammatory diseases.

Abstract

Neutrophil-endothelial cell interactions are mediated by interacting sets of cell adhesion molecules (CAMs) and chemoattractant/activator molecules to form an "adhesion cascade." The initial phase of inflammation, a transient slowing of neutrophils in postcapillary venules, is mediated by selectins. Subsequently, firm adhesion of neutrophils to the vessel wall occurs via interaction of the CD11/CD18 (beta 2) integrins to endothelial ligands such as intercellular adhesion molecule-1 (ICAM-1). This binding requires activation of CD11/CD18 by exposure of the neutrophil to a variety of activating/chemoattractant molecules, such as platelet-activating factor or interleukin-8. Finally, transmigration into tissues occurs, a process that requires both a chemotactic stimulus and engagement of platelet-endothelial cell adhesion molecule-1 (PECAM-1). Several approaches have been used to probe the role of CAMs in vivo. These include the use of blocking antibodies, chimeric selectin-immunoglobulin proteins, sialyl Lewisx oligosaccharides and peptides, along with the study of humans and animals with genetically determined adhesion deficiencies. These studies demonstrate that CAM blockade can effectively inhibit inflammation; however, there appear to be clear differences in the adhesion requirements for particular types of inflammation. By understanding the CAM/chemoattractant profiles involved in specific disease states, it may be possible to precisely and effectively target therapy to a wide variety of inflammatory diseases.

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Cite This Study

Albelda et al. (1994) studied this question.

synapsesocial.com/papers/6a079270b152628b468b3c11https://doi.org/10.1096/fasebj.8.8.8181668
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