ROLE OF NEUTROPHIL-ENDOTHELIAL CELL-ADHESION IN INFLAMMATORY DISORDERS

被引:116
作者
KORTHUIS, RJ [1 ]
ANDERSON, DC [1 ]
GRANGER, DN [1 ]
机构
[1] LOUISIANA STATE UNIV,MED CTR,SCH MED,DEPT PHYSIOL,1501 KINGS HIGHWAY,SHREVEPORT,LA 71130
关键词
D O I
10.1016/0883-9441(94)90032-9
中图分类号
R4 [临床医学];
学科分类号
1002 ; 100602 ;
摘要
Polymorphonuclear leukocytes are armed with an impressive arsenal of bactericidal agents that allow these cells to play a vital role in host defense against invading pathogens. However, these same agents can produce extensive cellular damage in host tissues when leukocytes are activated during inflammatory conditions. Recognition of this fact, when coupled with the observation that leukocyte adhesion to post-capillary venules is a critical first step in the inflammatory process, has led to the development of the concept that inhibition of neutrophil-endothelial cell adhesion (NECA) may represent a novel therapeutic strategy for the prevention of leukocyte-dependent injury in inflammatory conditions. Indeed, pharmacological or immunologic inhibition of NECA reduces cellular injury, dysfunction, and necrosis induced by ischemia/reperfusion, circulatory shock and resuscitation, organ transplantation, cardiopulmonary bypass, frostbite, and thermal trauma. NECA also appears to play an important role in the pathobiology of airway inflammation and asthma, pulmonary oxygen toxicity, arthritis, bacterial meningitis, and cerebral malaria. The aim of this review is to summarize the evidence implicating NECA in the pathogenesis of these inflammatory conditions. © 1994.
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页码:47 / 71
页数:25
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  • [1] Adams, Hubscher, Shaw, Et al., Intercellular adhesion molecule 1 on liver allografts during rejection, Lancet, 2, pp. 1122-1125, (1989)
  • [2] Adams, Wang, Burnett, Et al., Neutrophil activation - an important cause of tissue damage during liver allograft rejection?, Transplantation, 50, pp. 86-91, (1990)
  • [3] Adkins, Taylor, Role of xanthine oxidase and neutrophils in ischemia-reperfusion injury in rabbit lung, J App] Physiol, 69, pp. 2012-2018, (1990)
  • [4] Ames, Wright, Kowada, Et al., Cerebral ischemia: II The no-reflow phenomenon, Am J Pathol, 52, (1968)
  • [5] Anderson, Springer, Leukocyte adhesion deficiency: an inherited defect in the Mac-l, LFA-1, and p150, 95 glycoproteins, Am Rev Med, 38, pp. 175-194, (1987)
  • [6] Arfors, Lundberg, Lindbom, Et al., A monoclonal antibody to the membrane glycoprotein complex CDl8 inhibits polymorphonuclear leukocyte accumulation and plasma leakage in vivo, Blood, 69, pp. 338-340, (1987)
  • [7] Asako, Granger, Korthuis, Phalloidin reduces leukocyte emigration and vascular permeability in postcapillary venules, Am J Physiol, 263, pp. H1637-H1642, (1992)
  • [8] Asako, Kubes, Baethge, Et al., Reduction in leukocyte adherence and emigration by cyclosporine and L683,590 (FK506) in postcapillary venules, Transplantation, 54, pp. 686-690, (1992)
  • [9] Atherton, Born, Relatinship between the velocity of rolling granulocytes and that of blood flow in venules, J Physiol, 233, pp. 157-165, (1973)
  • [10] Bando, Pillai, Cameron, Et al., Leukocyte depletion ameliorates free radical-mediated lung injury after cardiopulmonary bypass, J Thorac Cardiovasc Surg, 99, pp. 873-877, (1990)