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用合成大肠杆菌热稳定毒素的超抗原形式制备的交联类毒素疫苗的特性。

Properties of cross-linked toxoid vaccines made with hyperantigenic forms of synthetic Escherichia coli heat-stable toxin.

作者信息

Klipstein F A, Engert R F, Houghten R A

出版信息

Infect Immun. 1984 May;44(2):268-73. doi: 10.1128/iai.44.2.268-273.1984.

Abstract

The ability of hyperantigenic preparations of synthetically produced Escherichia coli heat-stable toxin (ST) to provide an immunogenically more potent vaccine when cross-linked by the glutaraldehyde reaction to the heat-labile toxin B subunit was assessed. Three synthetic ST preparations were evaluated: ST(S) had the same antigenicity and toxicity (secretory potency in the suckling mouse assay) as native ST, ST 1056 had 3.5-fold more antigenicity and 1% toxicity, and ST(C) had 15-fold greater antigenicity and 31% toxicity. Vaccines that contained equal antigenic proportions of ST and B subunit, as determined by enzyme-linked immunosorbent assays, consisted by weight of 52% ST(S), 25% ST 1056, and 9% ST(C). The initially lower toxicity and smaller proportions by weight of hyperantigenic ST preparations yielded vaccines that had nearly 10-fold less residual ST toxicity than the ST(S) vaccine. Immunization of rats with graded dosages of vaccines containing 9% ST(C) and 51% ST(S) by weight, but equal amounts of ST(S) antigenicity, raised to the same degree dose-dependent increases in mucosal immunoglobulin A antitoxin titers to ST(S) which correlated with the amount of protection against challenge with a viable LT-/ST+ strain. These observations indicate that hyperantigenic synthetic ST preparations provide immunologically more potent vaccines than those obtained with the previously used synthetic ST(S) preparation, which has the same biological properties as native ST.

摘要

评估了通过戊二醛反应与热不稳定毒素B亚基交联时,合成产生的大肠杆菌热稳定毒素(ST)的超抗原制剂提供免疫原性更强疫苗的能力。评估了三种合成ST制剂:ST(S)具有与天然ST相同的抗原性和毒性(在乳鼠试验中的分泌效力),ST 1056的抗原性高3.5倍,毒性为1%,ST(C)的抗原性高15倍,毒性为31%。通过酶联免疫吸附测定法确定,含有等量抗原比例的ST和B亚基的疫苗,按重量计由52%的ST(S)、25%的ST 1056和9%的ST(C)组成。超抗原ST制剂最初较低的毒性和较小的重量比例产生的疫苗,其残余ST毒性比ST(S)疫苗低近10倍。用按重量计含有9% ST(C)和51% ST(S)但ST(S)抗原量相等的分级剂量疫苗免疫大鼠,可使黏膜免疫球蛋白A抗毒素对ST(S)的滴度呈剂量依赖性增加,增加程度相同,这与针对活的LT-/ST+菌株攻击的保护量相关。这些观察结果表明,超抗原合成ST制剂比以前使用的与天然ST具有相同生物学特性的合成ST(S)制剂提供的疫苗在免疫方面更有效。

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