Apte R N, Galanos C, Pluznik D H
J Cell Physiol. 1976 Jan;87(1):71-8. doi: 10.1002/jcp.1040870110.
An analysis of which component of lipopolysaccharides (LPS), the lipid or the polysaccharide (PS), is active in stimulating the murine granulopoietic system has been performed. LPS with different structures, isolated from different mutant strains of Salmonella and chemical degradation products of lipopolysaccharides have been used. Lipid A obtained by acid hydrolysys of the LPS and complexed to bovine serum albumin (BSA) (lipid A-BSA) was shown to be active in generating serum colony stimulating factor (CSF) and in increasing the splenic colony forming cells (CFC) levels, although it was less active than the parent LPS. The polysaccharide (PS) showed no significant activity at the concentrations used. LPS (glycolipids) from R mutants of Salmonella minnesota were active to the same extent as the LPS. The fact that even the most defective LPS from the R mutant R595 which contains lipid A and KDO only is a potent endotoxin, points unequivocally, to lipid A, as the active principle in stimulating the granulopoietic system.
已对脂多糖(LPS)的哪个成分(脂质或多糖(PS))在刺激小鼠粒细胞生成系统中具有活性进行了分析。使用了从不同沙门氏菌突变菌株分离得到的具有不同结构的LPS以及脂多糖的化学降解产物。通过LPS的酸水解获得并与牛血清白蛋白(BSA)复合的脂质A(脂质A - BSA)显示出在产生血清集落刺激因子(CSF)和提高脾集落形成细胞(CFC)水平方面具有活性,尽管其活性低于亲本LPS。在所使用的浓度下,多糖(PS)未显示出显著活性。来自明尼苏达沙门氏菌R突变体的LPS(糖脂)与LPS具有相同程度的活性。即使是来自仅含有脂质A和3 - 脱氧 - D - 甘露糖 - 辛酮糖酸(KDO)的R突变体R595的最有缺陷的LPS也是一种强效内毒素,这一事实明确指出脂质A是刺激粒细胞生成系统的活性成分。