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大肠杆菌K235脂多糖无毒衍生物的生物学特性

Biologic properties of nontoxic derivatives of a lipopolysaccharide from Escherichia coli K235.

作者信息

McIntire F C, Hargie M P, Schenck J R, Finley R A, Sievert H W, Rietschel E T, Rosenstreich D L

出版信息

J Immunol. 1976 Aug;117(2):674-8.

PMID:781135
Abstract

Lipopolysaccharide (LPS)2 from Escherichia coli K235 was treated with o-phthalic anhydride to obtain a high degree of esterification of available hydroxyl groups, leaving a free carboxyl for each hydroxyl esterified (SPLPS). Although there was no demonstrable loss of fatty acids, this conversion of LPS to a polyanionic molecule altered dramatically the spectrum of biologic properties, most of which are normally attributed to the lipid A (LA) moiety. Mitogenicity for mouse B cells was decreased several hundred-fold; reaction with antibodies to LPS was abolished; pyrogenicity and toxicity were decreased by factors of 10(5) and 10(4); the ability to induce the Shwartzman reaction in rabbits was decreased 500-fold, and the ability to stimulate production of interferon in mice was decreased by more than 2 x 10(3). However, despite the loss of these properties, SPLPS retained the ability to act as an immunologic adjuvant. The nature of the anionic group is important, e.g., sodium succinyl-LPS (SuLPS) is 10-fold more pyrogenic and toxic than sodium phthalyl-LPS (SPLPS). Data on another LPS derivative, from which ester-linked fatty acid residues were removed before phthalylation, suggest that the ester-linked fatty acid groups in the lipid A moeity of SPLPS may not be necessary for its immunologic adjuvant effect.

摘要

用邻苯二甲酸酐处理来自大肠杆菌K235的脂多糖(LPS),以使可利用的羟基达到高度酯化,每个被酯化的羟基留下一个游离羧基(SPLPS)。尽管未发现脂肪酸有明显损失,但LPS转变为聚阴离子分子后,其生物学特性谱发生了显著变化,其中大多数特性通常归因于脂质A(LA)部分。对小鼠B细胞的促有丝分裂活性降低了数百倍;与抗LPS抗体的反应消失;致热原性和毒性分别降低了10⁵和10⁴倍;诱导家兔施瓦茨曼反应的能力降低了500倍,刺激小鼠产生干扰素的能力降低了超过2×10³倍。然而,尽管失去了这些特性,SPLPS仍保留了作为免疫佐剂的能力。阴离子基团的性质很重要,例如,琥珀酰-LPS钠盐(SuLPS)的致热原性和毒性比邻苯二甲酰-LPS钠盐(SPLPS)高10倍。关于另一种LPS衍生物的数据表明,在邻苯二甲酰化之前去除了酯连接脂肪酸残基,这表明SPLPS脂质A部分中的酯连接脂肪酸基团对于其免疫佐剂作用可能不是必需的。

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