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Regulation of macrophage activation
Authors:J?Ma  T?Chen  J?Mandelin  A?Ceponis  N?E?Miller  M?Hukkanen  G?F?Ma  Email author" target="_blank">Y?T?KonttinenEmail author
Institution:(1) Department of Anatomy, Institute of Biomedicine, University of Helsinki, Helsinki, Finland;(2) Department of Medicine/invärtes medicin, Helsinki University Central Hospital, Helsinki, Finland;(3) Johnson and Johnson Pharmaceutical Research and Development, Laboratory of Immunology, San Diego, California, USA;(4) OmniViz, Inc., Maynard, Maryland, USA;(5) ORTON Orthopaedic Hospital of the Invalid Foundation, Helsinki, Finland;(6) Biomedicum, 00029 Hus, Finland
Abstract:IFN-gamma rapidly primes the macrophage via JAK1/2-STAT1 pathway so that it can subsequently undergo a slower classical type 1 activation upon exposure to T helper (Th)1 cytokines such as IFNgamma or other activators, including tumor necrosis factor and lipopolysaccharide, e.g. in intracellular killing of phagocytosed Mycobacterium tuberculosis. If instead it is driven by Th2 cytokines interleukin (IL)-4 and IL-13, it undergoes alternate type 2 activation, which enhances endocytotic antigen uptake and presentation, mast cell and eosinophil involvement and type 2 granuloma formation, e.g. in response to parasitic and extracellular pathogens. Particle-induced macrophage activation was shown to differ from classical and alternate activation, showing in DNA microarray experiments (complete linkage/ Euclidean distance metric analysis) upregulation of nonsecreted structural/signaling molecules and lack of secreted proin-flammatory cyto- and chemokines. The switch-off (deactivation) of already activated macrophages is an active, controlled process in which IL-10 and corticosteroids play important roles and to which15dPGJ2, PGA1/2 and vasoactive intestinal peptide often contribute.Received 16 January 2003; received after revision 14 March 2003; accepted 2 April 2003
Keywords:Macrophage  classical activation  alternate activation  priming  deactivation
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