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一种多价大肠杆菌O-多糖-毒素A结合疫苗的合成与表征

Synthesis and characterization of a polyvalent Escherichia coli O-polysaccharide-toxin A conjugate vaccine.

作者信息

Cryz S J, Que J O, Cross A S, Fürer E

机构信息

Swiss Serum and Vaccine Institute, Berne.

出版信息

Vaccine. 1995 Apr;13(5):449-53. doi: 10.1016/0264-410x(94)00009-c.

Abstract

A 12-valent Escherichia coli O-polysaccharide (O-PS)-toxin A conjugate vaccine was formulated. Nonpyrogenic, low-molecular-weight O-PS was derived from lipopolysaccharides (LPS) of the following serotypes: O1,O2,O4,O6,O7,O8,O12, O15,O16,O18,O25, and O75. Individual O-PS were covalently coupled to Pseudomonas aeruginosa toxin A using adipic acid dihydrazide as a spacer molecule and carbodiimide as a coupling agent. On a weight basis, the final multivalent vaccine was composed of 43% O-PS and 57% toxin A. The vaccine was nontoxic nad nonpyrogenic in anti-LPS immunoglobulin G (IgG) antibody titers. When passively transferred to mice, immune rabbit IgG conferred statistically significant (p < 0.05) protection against a challenge with 9 of the 12 vaccine serotypes. For two serotypes, although the mortality rate declined by > or 50% in the passively immunized versus the control group, the difference did not reach statistical significance. The degree of protection provided by passively transferred IgG was influenced by both the anti-LPS antibody levels in the IgG preparation and the virulence of the challenge strain. Active immunization of mice with either conjugate vaccine or killed E. coli whole cells did not confer protection. This was most probably due to the fact that these antigens induced a meagre anti-LPS IgG antibody response.

摘要

制备了一种12价大肠杆菌O多糖(O-PS)-毒素A结合疫苗。无热原性的低分子量O-PS源自以下血清型的脂多糖(LPS):O1、O2、O4、O6、O7、O8、O12、O15、O16、O18、O25和O75。使用己二酸二酰肼作为间隔分子、碳二亚胺作为偶联剂,将各个O-PS共价偶联至铜绿假单胞菌毒素A。以重量计,最终的多价疫苗由43%的O-PS和57%的毒素A组成。该疫苗无毒且无热原性,可提高抗LPS免疫球蛋白G(IgG)抗体滴度。当将免疫兔IgG被动转移至小鼠时,针对12种疫苗血清型中的9种血清型的攻击提供了具有统计学意义(p<0.05)的保护。对于两种血清型,尽管被动免疫组的死亡率相较于对照组下降了50%以上,但差异未达到统计学意义。被动转移的IgG提供的保护程度受IgG制剂中的抗LPS抗体水平和攻击菌株的毒力影响。用结合疫苗或灭活的大肠杆菌全细胞对小鼠进行主动免疫均未提供保护。这很可能是因为这些抗原诱导了微弱的抗LPS IgG抗体反应。

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