Mulligan M S, Lowe J B, Larsen R D, Paulson J, Zheng Z L, DeFrees S, Maemura K, Fukuda M, Ward P A
Department of Pathology, University of Michigan Medical School, Ann Arbor 48109.
J Exp Med. 1993 Aug 1;178(2):623-31. doi: 10.1084/jem.178.2.623.
Using sialyl Lewisx (SLX) oligosaccharides derived from fucosyl transferase-expressing cells or generated synthetically, the ability of these compounds to protect against acute lung damage after deposition of immunoglobulin (Ig)G or IgA immune complexes has been determined. The synthetic compounds were tetra- and pentasaccharide derivates of SLX as well as the nonfucosylated forms of SLX as controls. In the IgG immune complex model of lung injury, which is E-selectin dependent, SLX preparations provided dose-dependent protective effects, as assessed by changes in lung vascular permeability and hemorrhage. Protective effects were associated with diminished tissue accumulation of neutrophils in lungs (as assessed by myeloperoxidase). Morphological assessment revealed reduced physical contact of neutrophils with the pulmonary vascular endothelium and reduced tissue accumulation of neutrophils. In the model of IgA immune complex-induced lung injury, which does not involve participation of neutrophils and is independent of the requirement for E-selectin, SLX preparations were not protective. These data suggest that, in neutrophil-mediated and E-selectin-dependent lung injury, SLX preparations provide significant, protective effects against inflammatory vascular injury. The ability to achieve antiinflammatory outcomes in vivo with appropriate oligosaccharides suggests a new approach to the blocking of acute inflammatory responses.
利用从表达岩藻糖基转移酶的细胞中获得或通过合成产生的唾液酸化路易斯x(SLX)寡糖,已确定了这些化合物在免疫球蛋白(Ig)G或IgA免疫复合物沉积后预防急性肺损伤的能力。合成化合物为SLX的四糖和五糖衍生物以及作为对照的非岩藻糖基化形式的SLX。在依赖E-选择素的IgG免疫复合物肺损伤模型中,通过肺血管通透性和出血的变化评估,SLX制剂具有剂量依赖性的保护作用。保护作用与肺中嗜中性粒细胞组织积聚减少有关(通过髓过氧化物酶评估)。形态学评估显示嗜中性粒细胞与肺血管内皮的物理接触减少以及嗜中性粒细胞组织积聚减少。在不涉及嗜中性粒细胞参与且不依赖E-选择素的IgA免疫复合物诱导的肺损伤模型中,SLX制剂没有保护作用。这些数据表明,在嗜中性粒细胞介导且依赖E-选择素的肺损伤中,SLX制剂对炎症性血管损伤具有显著的保护作用。用合适的寡糖在体内实现抗炎结果的能力提示了一种阻断急性炎症反应的新方法。