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脂多糖的物理状态和生物活性。脂质A成分的毒性和免疫原性。

Physical state and biological activity of lipopolysaccharides. Toxicity and immunogenicity of the lipid A component.

作者信息

Galanos C

出版信息

Z Immunitatsforsch Exp Klin Immunol. 1975 Jul;149(2-4):214-29.

PMID:126555
Abstract

Bacterial lipopolysaccharides are negatively charged macromolecules due to the presence of phosphate, pyrophosphate and carboxyl groups. When isolated from bacteria, they are obtained in salt form with metal cations and basic amines. Removal of these ionically bound substances by electrodialysis leads to acidic lipopolysaccharides which on neutralizing with different bases, preparations are obtained which show distinct differences in their physico-chemical properties and in their biological activity. Soluble lipopolysaccharides interact with complement leading to loss of hemolytic activity. This property is embedded in the lipid A part of the molecule and is expressed only when the lipopolysaccharide is present in a favourable particle size. Nevertheless, a number of lipopolysaccharides exists, which, regardless of their particle size do not interact with complement. Lipid A is the part of the molecule responsible for endotoxicity. This was demonstrated by employing solubilized lipid A in complex form with BSA. Soluble lipid A/BSA complexes proved highly toxic for mice and pyrogenic in rabbits, and express many biological activities exhibited by intact lipopolysaccharides. Lipid A, when exposed on the bacterial cell-surface acts as a powerful immunogen, giving rise to the production of specific anti-lipid A antibodies that interact with the lipid A obtained from lipopolysaccharides that are otherwise distinct in their O-serological specificity. Anti-lipid A antibodies occur naturally in the serum of many animals and humans. The biological significance of anti-lipid A antibodies is discussed.

摘要

细菌脂多糖是带负电荷的大分子,这是由于存在磷酸基、焦磷酸基和羧基。从细菌中分离出来时,它们以与金属阳离子和碱性胺形成的盐的形式获得。通过电渗析去除这些离子结合的物质会得到酸性脂多糖,用不同的碱中和后,可得到在物理化学性质和生物活性上表现出明显差异的制剂。可溶性脂多糖与补体相互作用会导致溶血活性丧失。这种特性存在于分子的脂质A部分,并且只有当脂多糖以合适的颗粒大小存在时才会表现出来。然而,存在一些脂多糖,无论其颗粒大小如何,都不会与补体相互作用。脂质A是分子中负责内毒素毒性的部分。这是通过使用与牛血清白蛋白(BSA)形成复合形式的可溶性脂质A来证明的。可溶性脂质A/BSA复合物对小鼠具有高度毒性,对兔子具有致热作用,并表现出完整脂多糖所具有的许多生物活性。当脂质A暴露在细菌细胞表面时,它会作为一种强大的免疫原,引发特异性抗脂质A抗体的产生,这些抗体与从O-血清学特异性不同的脂多糖中获得的脂质A相互作用。抗脂质A抗体天然存在于许多动物和人类的血清中。本文讨论了抗脂质A抗体的生物学意义。

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