Christ W J, Asano O, Robidoux A L, Perez M, Wang Y, Dubuc G R, Gavin W E, Hawkins L D, McGuinness P D, Mullarkey M A
Elsai Research Institute, Andover, MA 01810-2441, USA.
Science. 1995 Apr 7;268(5207):80-3. doi: 10.1126/science.7701344.
Shock due to Gram-negative bacterial sepsis is a consequence of acute inflammatory response to lipopolysaccharide (LPS) or endotoxin released from bacteria. LPS is a major constituent of the outer membrane of Gram-negative bacteria, and its terminal disaccharide phospholipid (lipid A) portion contains the key structural features responsible for toxic activity. Based on the proposed structure of nontoxic Rhodobacter capsulatus lipid A, a fully stabilized endotoxin antagonist E5531 has been synthesized. In vitro, E5531 demonstrated potent antagonism of LPS-mediated cellular activation in a variety of systems. In vivo, E5531 protected mice from LPS-induced lethality and, in cooperation with an antibiotic, protected mice from a lethal infection of viable Escherichia coli.
革兰氏阴性菌败血症所致的休克是对细菌释放的脂多糖(LPS)或内毒素产生急性炎症反应的结果。LPS是革兰氏阴性菌外膜的主要成分,其末端二糖磷脂(脂质A)部分包含负责毒性活性的关键结构特征。基于无毒的荚膜红细菌脂质A的提议结构,已合成了一种完全稳定的内毒素拮抗剂E5531。在体外,E5531在多种系统中均表现出对LPS介导的细胞活化的强效拮抗作用。在体内,E5531可保护小鼠免受LPS诱导的致死作用,并且与抗生素协同作用时,可保护小鼠免受活的大肠杆菌的致死性感染。